
NATURE . COM {
}
Title:
Induction of pathogenic TH17 cells by inducible salt-sensing kinase SGK1 | Nature
Description:
Transcriptional profiling of developing TH17 cells identifies serum glucocorticoid kinase 1 (SGK1) as an essential node downstream of IL-23 signalling, and transcriptional analysis shows that a modest increase in salt concentration induces SGK1 expression, promotes IL-23 receptor expression and enhances TH17 cell differentiation, accelerating the development of autoimmunity. Two independent groups have come to the same surprising conclusion: that increased salt concentrations promote autoimmune disease by stimulating the production of interleukin-17-producing helper T (TH17) cells from CD4+ T cells. Chuan Wu et al. show that increases in salt concentrations induce serum glucocorticoid kinase 1 (SGK1) in T cells and enhance TH17 differentiation in vitro and in vivo in mice. Markus Kleinewietfeld et al. find that salt induces murine and human TH17 cells by a mechanism dependent on activation of SGK1 and the p38 MAP kinase/NFAT5 pathway. Mice on a high-salt diet develop a more severe experimental autoimmune encephalomyelitis, a model for brain inflammation, owing to high numbers of infiltrating TH17 cells. These studies raise the possibility that high salt intake might trigger tissue inflammation and autoimmune disease in humans. A further paper from Nir Yosef et al. presents a global view of the gene networks regulating TH17 cell differentiation. TH17 cells (interleukin-17 (IL-17)-producing helper T cells) are highly proinflammatory cells that are critical for clearing extracellular pathogens and for inducing multiple autoimmune diseases1. IL-23 has a critical role in stabilizing and reinforcing the TH17 phenotype by increasing expression of IL-23 receptor (IL-23R) and endowing TH17 cells with pathogenic effector functions2,3. However, the precise molecular mechanism by which IL-23 sustains the TH17 response and induces pathogenic effector functions has not been elucidated. Here we used transcriptional profiling of developing TH17 cells to construct a model of their signalling network and nominate major nodes that regulate TH17 development. We identified serum glucocorticoid kinase 1 (SGK1), a serine/threonine kinase4, as an essential node downstream of IL-23 signalling. SGK1 is critical for regulating IL-23R expression and stabilizing the TH17 cell phenotype by deactivation of mouse Foxo1, a direct repressor of IL-23R expression. SGK1 has been shown to govern Na+ transport and salt (NaCl) homeostasis in other cells5,6,7,8. We show here that a modest increase in salt concentration induces SGK1 expression, promotes IL-23R expression and enhances TH17 cell differentiation in vitro and in vivo, accelerating the development of autoimmunity. Loss of SGK1 abrogated Na+-mediated TH17 differentiation in an IL-23-dependent manner. These data demonstrate that SGK1 has a critical role in the induction of pathogenic TH17 cells and provide a molecular insight into a mechanism by which an environmental factor such as a high salt diet triggers TH17 development and promotes tissue inflammation.
Website Age:
30 years and 10 months (reg. 1994-08-11).
Matching Content Categories {📚}
- Science
- Education
- Photography
Content Management System {📝}
What CMS is nature.com built with?
Custom-built
No common CMS systems were detected on Nature.com, and no known web development framework was identified.
Traffic Estimate {📈}
What is the average monthly size of nature.com audience?
🌆 Monumental Traffic: 20M - 50M visitors per month
Based on our best estimate, this website will receive around 42,555,829 visitors per month in the current month.
check SE Ranking
check Ahrefs
check Similarweb
check Ubersuggest
check Semrush
How Does Nature.com Make Money? {💸}
Display Ads {🎯}
The website utilizes display ads within its content to generate revenue. Check the next section for further revenue estimates.
Ads are managed by yourbow.com. Particular relationships are as follows:
Direct Advertisers (10)
google.com, pmc.com, doceree.com, yourbow.com, audienciad.com, onlinemediasolutions.com, advibe.media, aps.amazon.com, getmediamx.com, onomagic.comReseller Advertisers (38)
conversantmedia.com, rubiconproject.com, pubmatic.com, appnexus.com, openx.com, smartadserver.com, lijit.com, sharethrough.com, video.unrulymedia.com, google.com, yahoo.com, triplelift.com, onetag.com, sonobi.com, contextweb.com, 33across.com, indexexchange.com, media.net, themediagrid.com, adform.com, richaudience.com, sovrn.com, improvedigital.com, freewheel.tv, smaato.com, yieldmo.com, amxrtb.com, adyoulike.com, adpone.com, criteo.com, smilewanted.com, 152media.info, e-planning.net, smartyads.com, loopme.com, opera.com, mediafuse.com, betweendigital.comHow Much Does Nature.com Make? {💰}
Display Ads {🎯}
$536,300 per month
Estimations show Nature.com's display ad online revenue falls between $357,511 and $983,155 per month.
Keywords {🔍}
article, nature, google, scholar, cas, cells, sgk, cell, kinase, data, access, autoimmune, salt, supplementary, content, expression, information, yosef, serum, differentiation, cookies, gse, privacy, pathogenic, nir, thalhamer, kuchroo, ilr, development, inflammation, biol, glucocorticoidinducible, usa, file, powerpoint, chuan, theresa, aviv, regev, vijay, critical, diseases, role, mechanism, induces, promotes, high, responses, open, gene,
Topics {✒️}
nature portfolio permissions reprints privacy policy accession numbers gse43956 advertising gene expression responses social media glucocorticoid-inducible protein kinase high-salt diet develop nature med nature genet glucocorticoid-inducible kinase isoforms regulating il-23r expression nature immunol salt-sensitive hypertension monica glucocorticoid-inducible kinase sgk1 regulate th17 development nature 479 nature 496 nature integrin-mediated cell adhesion promotes il-23r expression content rubbing salt itk independent development springerlink instant access enhancing th17-mediated immunity regulates adipocyte differentiation glucocorticoid-inducible kinase 1 sgk1–/– data sets microarray data sets immune responses shannon permissions microarray data analysis il-23r expression h3k27me3 reveals specificity salt induces murine high salt memory high salt intake th17 responses promotes tissue inflammation th17 cell specification enhance th17 differentiation privacy personal data trigger tissue inflammation govern na+ transport pathogenic th17 cells th17 cell phenotype gse43957 gse43969
Schema {🗺️}
WebPage:
mainEntity:
headline:Induction of pathogenic TH17 cells by inducible salt-sensing kinase SGK1
description:Transcriptional profiling of developing TH17 cells identifies serum glucocorticoid kinase 1 (SGK1) as an essential node downstream of IL-23 signalling, and transcriptional analysis shows that a modest increase in salt concentration induces SGK1 expression, promotes IL-23 receptor expression and enhances TH17 cell differentiation, accelerating the development of autoimmunity. Two independent groups have come to the same surprising conclusion: that increased salt concentrations promote autoimmune disease by stimulating the production of interleukin-17-producing helper T (TH17) cells from CD4+ T cells. Chuan Wu et al. show that increases in salt concentrations induce serum glucocorticoid kinase 1 (SGK1) in T cells and enhance TH17 differentiation in vitro and in vivo in mice. Markus Kleinewietfeld et al. find that salt induces murine and human TH17 cells by a mechanism dependent on activation of SGK1 and the p38 MAP kinase/NFAT5 pathway. Mice on a high-salt diet develop a more severe experimental autoimmune encephalomyelitis, a model for brain inflammation, owing to high numbers of infiltrating TH17 cells. These studies raise the possibility that high salt intake might trigger tissue inflammation and autoimmune disease in humans. A further paper from Nir Yosef et al. presents a global view of the gene networks regulating TH17 cell differentiation. TH17 cells (interleukin-17 (IL-17)-producing helper T cells) are highly proinflammatory cells that are critical for clearing extracellular pathogens and for inducing multiple autoimmune diseases1. IL-23 has a critical role in stabilizing and reinforcing the TH17 phenotype by increasing expression of IL-23 receptor (IL-23R) and endowing TH17 cells with pathogenic effector functions2,3. However, the precise molecular mechanism by which IL-23 sustains the TH17 response and induces pathogenic effector functions has not been elucidated. Here we used transcriptional profiling of developing TH17 cells to construct a model of their signalling network and nominate major nodes that regulate TH17 development. We identified serum glucocorticoid kinase 1 (SGK1), a serine/threonine kinase4, as an essential node downstream of IL-23 signalling. SGK1 is critical for regulating IL-23R expression and stabilizing the TH17 cell phenotype by deactivation of mouse Foxo1, a direct repressor of IL-23R expression. SGK1 has been shown to govern Na+ transport and salt (NaCl) homeostasis in other cells5,6,7,8. We show here that a modest increase in salt concentration induces SGK1 expression, promotes IL-23R expression and enhances TH17 cell differentiation in vitro and in vivo, accelerating the development of autoimmunity. Loss of SGK1 abrogated Na+-mediated TH17 differentiation in an IL-23-dependent manner. These data demonstrate that SGK1 has a critical role in the induction of pathogenic TH17 cells and provide a molecular insight into a mechanism by which an environmental factor such as a high salt diet triggers TH17 development and promotes tissue inflammation.
datePublished:2013-03-06T00:00:00Z
dateModified:2013-03-06T00:00:00Z
pageStart:513
pageEnd:517
sameAs:https://doi.org/10.1038/nature11984
keywords:
Autoimmunity
Science
Humanities and Social Sciences
multidisciplinary
image:
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig1_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig2_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig3_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig4_HTML.jpg
isPartOf:
name:Nature
issn:
1476-4687
0028-0836
volumeNumber:496
type:
Periodical
PublicationVolume
publisher:
name:Nature Publishing Group UK
logo:
url:https://www.springernature.com/app-sn/public/images/logo-springernature.png
type:ImageObject
type:Organization
author:
name:Chuan Wu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Nir Yosef
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
type:Person
name:Theresa Thalhamer
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.
address:
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.,
type:PostalAddress
type:Organization
type:Person
name:Chen Zhu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Sheng Xiao
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Yasuhiro Kishi
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Aviv Regev
affiliation:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
name:Howard Hughes Medical Institute, Massachusetts Institute of Technology
address:
name:Department of Biology, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
type:Person
name:Vijay K. Kuchroo
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
type:Person
isAccessibleForFree:
hasPart:
isAccessibleForFree:
cssSelector:.main-content
type:WebPageElement
type:ScholarlyArticle
context:https://schema.org
ScholarlyArticle:
headline:Induction of pathogenic TH17 cells by inducible salt-sensing kinase SGK1
description:Transcriptional profiling of developing TH17 cells identifies serum glucocorticoid kinase 1 (SGK1) as an essential node downstream of IL-23 signalling, and transcriptional analysis shows that a modest increase in salt concentration induces SGK1 expression, promotes IL-23 receptor expression and enhances TH17 cell differentiation, accelerating the development of autoimmunity. Two independent groups have come to the same surprising conclusion: that increased salt concentrations promote autoimmune disease by stimulating the production of interleukin-17-producing helper T (TH17) cells from CD4+ T cells. Chuan Wu et al. show that increases in salt concentrations induce serum glucocorticoid kinase 1 (SGK1) in T cells and enhance TH17 differentiation in vitro and in vivo in mice. Markus Kleinewietfeld et al. find that salt induces murine and human TH17 cells by a mechanism dependent on activation of SGK1 and the p38 MAP kinase/NFAT5 pathway. Mice on a high-salt diet develop a more severe experimental autoimmune encephalomyelitis, a model for brain inflammation, owing to high numbers of infiltrating TH17 cells. These studies raise the possibility that high salt intake might trigger tissue inflammation and autoimmune disease in humans. A further paper from Nir Yosef et al. presents a global view of the gene networks regulating TH17 cell differentiation. TH17 cells (interleukin-17 (IL-17)-producing helper T cells) are highly proinflammatory cells that are critical for clearing extracellular pathogens and for inducing multiple autoimmune diseases1. IL-23 has a critical role in stabilizing and reinforcing the TH17 phenotype by increasing expression of IL-23 receptor (IL-23R) and endowing TH17 cells with pathogenic effector functions2,3. However, the precise molecular mechanism by which IL-23 sustains the TH17 response and induces pathogenic effector functions has not been elucidated. Here we used transcriptional profiling of developing TH17 cells to construct a model of their signalling network and nominate major nodes that regulate TH17 development. We identified serum glucocorticoid kinase 1 (SGK1), a serine/threonine kinase4, as an essential node downstream of IL-23 signalling. SGK1 is critical for regulating IL-23R expression and stabilizing the TH17 cell phenotype by deactivation of mouse Foxo1, a direct repressor of IL-23R expression. SGK1 has been shown to govern Na+ transport and salt (NaCl) homeostasis in other cells5,6,7,8. We show here that a modest increase in salt concentration induces SGK1 expression, promotes IL-23R expression and enhances TH17 cell differentiation in vitro and in vivo, accelerating the development of autoimmunity. Loss of SGK1 abrogated Na+-mediated TH17 differentiation in an IL-23-dependent manner. These data demonstrate that SGK1 has a critical role in the induction of pathogenic TH17 cells and provide a molecular insight into a mechanism by which an environmental factor such as a high salt diet triggers TH17 development and promotes tissue inflammation.
datePublished:2013-03-06T00:00:00Z
dateModified:2013-03-06T00:00:00Z
pageStart:513
pageEnd:517
sameAs:https://doi.org/10.1038/nature11984
keywords:
Autoimmunity
Science
Humanities and Social Sciences
multidisciplinary
image:
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig1_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig2_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig3_HTML.jpg
https://media.springernature.com/lw1200/springer-static/image/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_Article_BFnature11984_Fig4_HTML.jpg
isPartOf:
name:Nature
issn:
1476-4687
0028-0836
volumeNumber:496
type:
Periodical
PublicationVolume
publisher:
name:Nature Publishing Group UK
logo:
url:https://www.springernature.com/app-sn/public/images/logo-springernature.png
type:ImageObject
type:Organization
author:
name:Chuan Wu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Nir Yosef
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
type:Person
name:Theresa Thalhamer
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.
address:
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.,
type:PostalAddress
type:Organization
type:Person
name:Chen Zhu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Sheng Xiao
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Yasuhiro Kishi
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
type:Person
name:Aviv Regev
affiliation:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
name:Howard Hughes Medical Institute, Massachusetts Institute of Technology
address:
name:Department of Biology, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
type:Person
name:Vijay K. Kuchroo
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
type:Person
isAccessibleForFree:
hasPart:
isAccessibleForFree:
cssSelector:.main-content
type:WebPageElement
["Periodical","PublicationVolume"]:
name:Nature
issn:
1476-4687
0028-0836
volumeNumber:496
Organization:
name:Nature Publishing Group UK
logo:
url:https://www.springernature.com/app-sn/public/images/logo-springernature.png
type:ImageObject
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.
address:
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.,
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
name:Howard Hughes Medical Institute, Massachusetts Institute of Technology
address:
name:Department of Biology, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, USA
type:PostalAddress
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
ImageObject:
url:https://www.springernature.com/app-sn/public/images/logo-springernature.png
Person:
name:Chuan Wu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Nir Yosef
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
name:Theresa Thalhamer
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.
address:
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.,
type:PostalAddress
type:Organization
name:Chen Zhu
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Sheng Xiao
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Yasuhiro Kishi
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Aviv Regev
affiliation:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
name:Howard Hughes Medical Institute, Massachusetts Institute of Technology
address:
name:Department of Biology, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
name:Vijay K. Kuchroo
affiliation:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School
address:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
type:PostalAddress
type:Organization
name:Broad Institute of MIT and Harvard, 7 Cambridge Center
address:
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
type:PostalAddress
type:Organization
email:[email protected]
PostalAddress:
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Present address: Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, 5020 Salzburg, Austria.,
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
name:Department of Biology, Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, USA
name:Center for Neurologic Diseases, Brigham and Womenâs Hospital, Harvard Medical School, Boston, USA
name:Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, USA
WebPageElement:
isAccessibleForFree:
cssSelector:.main-content
External Links {🔗}(88)
- See how much https://link.springer.com/article/10.1038/nature11984?utm_source=nature&utm_medium=referral&utm_campaign=buyArticle makes per month
- How much revenue does http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE43956 generate?
- How much money does http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE43957 make?
- How much does http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE43969 net monthly?
- What is the monthly revenue of https://doi.org/10.1146%2Fannurev.immunol.021908.132710?
- How much profit is http://scholar.google.com/scholar_lookup?&title=IL-17%20and%20Th17%20Cells&journal=Annu.%20Rev.%20Immunol.&doi=10.1146%2Fannurev.immunol.021908.132710&volume=27&pages=485-517&publication_year=2009&author=Korn%2CT&author=Bettelli%2CE&author=Oukka%2CM&author=Kuchroo%2CVK making per month?
- Discover the revenue of https://doi.org/10.1074%2Fjbc.M207577200
- http://scholar.google.com/scholar_lookup?&title=Interleukin-23%20promotes%20a%20distinct%20CD4%20T%20cell%20activation%20state%20characterized%20by%20the%20production%20of%20interleukin-17&journal=J.%20Biol.%20Chem.&doi=10.1074%2Fjbc.M207577200&volume=278&pages=1910-1914&publication_year=2003&author=Aggarwal%2CS&author=Ghilardi%2CN&author=Xie%2CMH&author=de%20Sauvage%2CFJ&author=Gurney%2CAL income
- What's the revenue for https://doi.org/10.1038%2Fni1488?
- How much does http://scholar.google.com/scholar_lookup?&title=IL-6%20programs%20TH-17%20cell%20differentiation%20by%20promoting%20sequential%20engagement%20of%20the%20IL-21%20and%20IL-23%20pathways&journal=Nature%20Immunol.&doi=10.1038%2Fni1488&volume=8&pages=967-974&publication_year=2007&author=Zhou%2CL gross monthly?
- Earnings of https://doi.org/10.1152%2Fphysrev.00050.2005
- What's the financial gain of http://scholar.google.com/scholar_lookup?&title=%28Patho%29physiological%20significance%20of%20the%20serum-%20and%20glucocorticoid-inducible%20kinase%20isoforms&journal=Physiol.%20Rev.&doi=10.1152%2Fphysrev.00050.2005&volume=86&pages=1151-1178&publication_year=2006&author=Lang%2CF?
- How much does https://doi.org/10.1172%2FJCI0215696 make?
- What is the monthly revenue of http://scholar.google.com/scholar_lookup?&title=Impaired%20renal%20Na%2B%20retention%20in%20the%20sgk1-knockout%20mouse&journal=J.%20Clin.%20Invest.&doi=10.1172%2FJCI0215696&volume=110&pages=1263-1268&publication_year=2002&author=Wulff%2CP?
- How much profit does https://doi.org/10.1038%2Fnm.2498 make?
- Get to know what's the income of http://scholar.google.com/scholar_lookup?&title=Deregulation%20of%20the%20serum-%20and%20glucocorticoid-inducible%20kinase%20SGK1%20in%20the%20endometrium%20causes%20reproductive%20failure&journal=Nature%20Med.&doi=10.1038%2Fnm.2498&volume=17&pages=1509-1513&publication_year=2011&author=Salker%2CMS
- How much revenue does http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Abstract&list_uids=15695387 generate?
- How much does http://scholar.google.com/scholar_lookup?&title=Antiapoptotic%20effect%20of%20serum%20and%20glucocorticoid-inducible%20protein%20kinase%20is%20mediated%20by%20novel%20mechanism%20activating%20I%CE%BAB%20kinase&journal=Cancer%20Res.&volume=65&pages=457-464&publication_year=2005&author=Zhang%2CL&author=Cui%2CR&author=Cheng%2CX&author=Du%2CJ net monthly?
- Learn about the earnings of http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=PubMed&dopt=Abstract&list_uids=11956329
- What are the earnings of http://scholar.google.com/scholar_lookup?&title=Activation%20of%20SGK1%20by%20HGF%2C%20Rac1%20and%20integrin-mediated%20cell%20adhesion%20in%20MDCK%20cells%3A%20PI-3K-dependent%20and%20-independent%20pathways&journal=J.%20Cell%20Sci.&volume=115&pages=1985-1993&publication_year=2002&author=Shelly%2CC&author=Herrera%2CR?
- How much does https://doi.org/10.1126%2Fscisignal.2001935 net monthly?
- What's the financial intake of http://scholar.google.com/scholar_lookup?&title=ANAT%3A%20a%20tool%20for%20constructing%20and%20analyzing%20functional%20protein%20networks&journal=Sci.%20Signal.&doi=10.1126%2Fscisignal.2001935&volume=4&publication_year=2011&author=Yosef%2CN?
- How much money does https://doi.org/10.1128%2FMCB.21.3.952-965.2001 make?
- How much money does http://scholar.google.com/scholar_lookup?&title=Protein%20kinase%20SGK%20mediates%20survival%20signals%20by%20phosphorylating%20the%20forkhead%20transcription%20factor%20FKHRL1%20%28FOXO3a%29&journal=Mol.%20Cell.%20Biol.&doi=10.1128%2FMCB.21.3.952-965.2001&volume=21&pages=952-965&publication_year=2001&author=Brunet%2CA make?
- Income figures for https://doi.org/10.1016%2Fj.immuni.2008.12.009
- How much revenue does http://scholar.google.com/scholar_lookup?&title=Global%20mapping%20of%20H3K4me3%20and%20H3K27me3%20reveals%20specificity%20and%20plasticity%20in%20lineage%20fate%20determination%20of%20differentiating%20CD4%2B%20T%20cells&journal=Immunity&doi=10.1016%2Fj.immuni.2008.12.009&volume=30&pages=155-167&publication_year=2009&author=Wei%2CG bring in?
- How much income does https://doi.org/10.1210%2Fme.2009-0265 have?
- See how much http://scholar.google.com/scholar_lookup?&title=Serum-%20and%20glucocorticoid-inducible%20kinase%201%20%28SGK1%29%20regulates%20adipocyte%20differentiation%20via%20forkhead%20box%20O1&journal=Mol.%20Endocrinol.&doi=10.1210%2Fme.2009-0265&volume=24&pages=370-380&publication_year=2010&author=Di%20Pietro%2CN makes per month
- How much revenue does https://doi.org/10.1074%2Fjbc.M808848200 bring in?
- What's the income of http://scholar.google.com/scholar_lookup?&title=The%20transcription%20of%20FOXO%20genes%20is%20stimulated%20by%20FOXO3%20and%20repressed%20by%20growth%20factors&journal=J.%20Biol.%20Chem.&doi=10.1074%2Fjbc.M808848200&volume=284&pages=10334-10342&publication_year=2009&author=Essaghir%2CA&author=Dif%2CN&author=Marbehant%2CCY&author=Coffer%2CPJ&author=Demoulin%2CJB?
- What's the revenue for https://doi.org/10.1016%2Fj.cell.2012.09.016?
- What is the monthly revenue of http://scholar.google.com/scholar_lookup?&title=A%20validated%20regulatory%20network%20for%20Th17%20cell%20specification&journal=Cell&doi=10.1016%2Fj.cell.2012.09.016&volume=151&pages=289-303&publication_year=2012&author=Ciofani%2CM?
- Income figures for https://doi.org/10.1038%2Fnature10554
- http://adsabs.harvard.edu/cgi-bin/nph-data_query?link_type=ABSTRACT&bibcode=2011Natur.479..538B's revenue stream
- How much revenue does http://scholar.google.com/scholar_lookup?&title=Commensal%20microbiota%20and%20myelin%20autoantigen%20cooperate%20to%20trigger%20autoimmune%20demyelination&journal=Nature&doi=10.1038%2Fnature10554&volume=479&pages=538-541&publication_year=2011&author=Berer%2CK bring in?
- What's the profit of https://doi.org/10.1016%2Fj.chom.2011.08.005?
- What's the profit of http://scholar.google.com/scholar_lookup?&title=The%20genome%20of%20th17%20cell-inducing%20segmented%20filamentous%20bacteria%20reveals%20extensive%20auxotrophy%20and%20adaptations%20to%20the%20intestinal%20environment&journal=Cell%20Host%20Microbe&doi=10.1016%2Fj.chom.2011.08.005&volume=10&pages=260-272&publication_year=2011&author=Sczesnak%2CA?
- How much revenue does https://doi.org/10.1073%2Fpnas.0903602106 generate?
- Check the income stats for http://adsabs.harvard.edu/cgi-bin/nph-data_query?link_type=ABSTRACT&bibcode=2009PNAS..10614942S
- Learn about the earnings of http://scholar.google.com/scholar_lookup?&title=Role%20of%20the%20renin-angiotensin%20system%20in%20autoimmune%20inflammation%20of%20the%20central%20nervous%20system&journal=Proc.%20Natl%20Acad.%20Sci.%20USA&doi=10.1073%2Fpnas.0903602106&volume=106&pages=14942-14947&publication_year=2009&author=Stegbauer%2CJ
- How much cash flow does https://doi.org/10.4049%2Fjimmunol.0802886 have monthly?
- What's the monthly money flow for http://scholar.google.com/scholar_lookup?&title=Aldosterone%20promotes%20autoimmune%20damage%20by%20enhancing%20Th17-mediated%20immunity&journal=J.%20Immunol.&doi=10.4049%2Fjimmunol.0802886&volume=184&pages=191-202&publication_year=2010&author=Herrada%2CAA?
- Get to know what's the income of https://doi.org/10.1074%2Fjbc.M403260200
- How much income does http://scholar.google.com/scholar_lookup?&title=A%20novel%20pathway%20of%20epithelial%20sodium%20channel%20activation%20involves%20a%20serum-%20and%20glucocorticoid-inducible%20kinase%20consensus%20motif%20in%20the%20C%20terminus%20of%20the%20channel%27s%20alpha-subunit&journal=J.%20Biol.%20Chem.&doi=10.1074%2Fjbc.M403260200&volume=279&pages=38134-38142&publication_year=2004&author=Diakov%2CA&author=Korbmacher%2CC have?
- Profit of https://doi.org/10.1152%2Fajprenal.2001.280.4.F675
- How much profit does http://scholar.google.com/scholar_lookup?&title=Aldosterone%20induces%20rapid%20apical%20translocation%20of%20ENaC%20in%20early%20portion%20of%20renal%20collecting%20system%3A%20possible%20role%20of%20SGK&journal=Am.%20J.%20Physiol.%20Renal%20Physiol.&doi=10.1152%2Fajprenal.2001.280.4.F675&volume=280&pages=F675-F682&publication_year=2001&author=Loffing%2CJ make?
- What's the financial outcome of https://doi.org/10.1038%2Fng0506-500?
- What's the financial gain of http://scholar.google.com/scholar_lookup?&title=GenePattern%202.0&journal=Nature%20Genet.&doi=10.1038%2Fng0506-500&volume=38&pages=500-501&publication_year=2006&author=Reich%2CM?
- Monthly income for https://doi.org/10.1073%2Fpnas.0504609102
- How much does http://adsabs.harvard.edu/cgi-bin/nph-data_query?link_type=ABSTRACT&bibcode=2005PNAS..10212837S rake in every month?
- How much profit does http://scholar.google.com/scholar_lookup?&title=Significance%20analysis%20of%20time%20course%20microarray%20experiments&journal=Proc.%20Natl%20Acad.%20Sci.%20USA&doi=10.1073%2Fpnas.0504609102&volume=102&pages=12837-12842&publication_year=2005&author=Storey%2CJD&author=Xiao%2CW&author=Leek%2CJT&author=Tompkins%2CRG&author=Davis%2CRW make?
- How much does https://doi.org/10.1089%2Fcmb.2008.13TT rake in every month?
- How much money does http://scholar.google.com/scholar_lookup?&title=Timing%20of%20gene%20expression%20responses%20to%20environmental%20changes&journal=J.%20Comput.%20Biol.&doi=10.1089%2Fcmb.2008.13TT&volume=16&pages=279-290&publication_year=2009&author=Chechik%2CG&author=Koller%2CD make?
- What is the earnings of https://citation-needed.springer.com/v2/references/10.1038/nature11984?format=refman&flavour=references?
- https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Chuan%20Wu's financial summary
- What are the total earnings of https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Chuan%20Wu%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en?
- How much revenue does https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Nir%20Yosef produce monthly?
- What's the profit of https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Nir%20Yosef%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en?
- How much does https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Theresa%20Thalhamer pull in monthly?
- How much does https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Theresa%20Thalhamer%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en pull in?
- Financial intake of https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Chen%20Zhu
- How much does https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Chen%20Zhu%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en bring in each month?
- What's the income generated by https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Sheng%20Xiao each month?
- How much does https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Sheng%20Xiao%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en make?
- What's the profit of https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Yasuhiro%20Kishi?
- What is the earnings of https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Yasuhiro%20Kishi%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en?
- How much income is https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Aviv%20Regev earning monthly?
- How much does https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Aviv%20Regev%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en net monthly?
- How much does https://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=search&term=Vijay%20K.%20Kuchroo net monthly?
- Discover the revenue of https://scholar.google.co.uk/scholar?as_q=&num=10&btnG=Search+Scholar&as_epq=&as_oq=&as_eq=&as_occt=any&as_sauthors=%22Vijay%20K.%20Kuchroo%22&as_publication=&as_ylo=&as_yhi=&as_allsubj=all&hl=en
- How much does https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM24_ESM.pdf rake in every month?
- How much cash flow does https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM25_ESM.xlsx have monthly?
- What's the income of https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM26_ESM.xlsx?
- How much profit does https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM20_ESM.ppt generate?
- How much does https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM21_ESM.ppt make?
- What's the financial outcome of https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM22_ESM.ppt?
- What's the financial intake of https://static-content.springer.com/esm/art%3A10.1038%2Fnature11984/MediaObjects/41586_2013_BFnature11984_MOESM23_ESM.ppt?
- How much does https://s100.copyright.com/AppDispatchServlet?title=Induction%20of%20pathogenic%20TH17%20cells%20by%20inducible%20salt-sensing%20kinase%20SGK1&author=Chuan%20Wu%20et%20al&contentID=10.1038%2Fnature11984©right=Springer%20Nature%20Limited&publication=0028-0836&publicationDate=2013-03-06&publisherName=SpringerNature&orderBeanReset=true generate monthly?
- Earnings of https://citation-needed.springer.com/v2/references/10.1038/nature11984?format=refman&flavour=citation
- What's the income of https://doi.org/10.1186/s12964-023-01381-0?
- How much does https://doi.org/10.1038/s41598-024-51279-1 rake in every month?
- Check the income stats for https://doi.org/10.1038/s41581-023-00787-w
- How much does https://doi.org/10.1038/s41593-023-01497-z bring in each month?
- How much does https://doi.org/10.1038/s41577-024-00994-x pull in?
- Financial intake of https://www.protocols.io/
- What's the income generated by https://www.natureindex.com/ each month?
- How much money does http://www.naturechina.com generate?
- Explore the financials of https://www.natureasia.com/ja-jp
Analytics and Tracking {📊}
- Google Tag Manager
Libraries {📚}
- Prism.js
- Zoom.js
Emails and Hosting {✉️}
Mail Servers:
- mxa-002c5801.gslb.pphosted.com
- mxb-002c5801.gslb.pphosted.com
Name Servers:
- pdns1.ultradns.net
- pdns2.ultradns.net
- pdns3.ultradns.org
- pdns4.ultradns.org
- pdns5.ultradns.info
- pdns6.ultradns.co.uk
CDN Services {📦}
- Crossref