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We are analyzing https://link.springer.com/article/10.1007/s11033-022-07154-1.

Title:
The impact of DAPK1 and mTORC1 signaling association on autophagy in cancer | Molecular Biology Reports
Description:
Background The autophagy pathway is used by eukaryotic cells to maintain metabolic homeostasis. Autophagy has two functions in cancerous cells which could inhibit tumorigenesis or lead to cancer progression by increasing cell survival and proliferation. Methods and results In this review article, Web of Science, PubMed, Scopus, and Google Scholar were searched and summarized published studies to explore the relationship between DAPK1 and mTORC1 signaling association on autophagy in cancer. Autophagy is managed through various proteins including the mTOR, which is two separated structural and functional complexes known as mTORC1 and mTORC2. MTORC1 is an important component of the regulatory pathway affecting numerous cellular functions including proliferation, migration, invasion, and survival. This protein plays a key role in human cancers. The activity level of mTORC1 is regulated by the death-associated protein kinases (DAPks) family, especially DAPK1. In many cancers, DAPK1 acts as a tumor suppressor which can be attributed to its ability to suppress cellular transformation and to inhibit metastasis. Conclusions A deep investigation not only will reveal more about the function of DAPK1 but also might provide insights into novel therapies aimed to modulate the autophagy pathway in cancer and to achieve better cancer therapy.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {πŸ“š}

  • Education
  • Health & Fitness
  • Science

Content Management System {πŸ“}

What CMS is link.springer.com built with?

Custom-built

No common CMS systems were detected on Link.springer.com, and no known web development framework was identified.

Traffic Estimate {πŸ“ˆ}

What is the average monthly size of link.springer.com audience?

🌠 Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 7,642,828 visitors per month in the current month.

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How Does Link.springer.com Make Money? {πŸ’Έ}

We're unsure if the website is profiting.

Many websites are intended to earn money, but some serve to share ideas or build connections. Websites exist for all kinds of purposes. This might be one of them. Link.springer.com might be making money, but it's not detectable how they're doing it.

Keywords {πŸ”}

pubmed, google, scholar, cas, cancer, autophagy, dapk, mtorc, central, protein, article, cell, mtor, mol, role, death, kinase, biol, sciences, pathway, cancers, deathassociated, kinases, nat, regulation, int, privacy, cookies, content, research, molecular, signaling, review, functions, human, sci, medical, information, publish, search, published, manuscript, safi, cells, cellular, access, pathways, med, febs, disease,

Topics {βœ’οΈ}

molecular research center month download article/chapter pi3k-dependent feedback loop dapk-related protein kinases lysosome-dependent degradation pathway ser289 phosphorylation activates hossein teimori google scholar privacy choices/manage cookies key regulatory element suppress cellular transformation full article pdf zahra arshadi promising drug target autophagy-related pathways related subjects mapk pathway activation european economic area maintain metabolic homeostasis controlling ulk1 ubiquitylation future therapeutic outcomes preventing nuclear transport clarifies rapamycin mechanism potential therapeutic purpose acta pharm sin tumor microenvironment intracellular signaling pathways conditions privacy policy leucine regulates autophagy shahid beheshti university islamic azad university central role functional gene cloning article movahhed medical laboratory sciences allied medical sciences additional information publisher' accepting optional cookies mtorc1 signaling association mediates mtorc1 activation breast cancer patients ethics declarations conflict mtorc1 component raptor mtor inhibits autophagy summarized published studies main content log cancer review published journal finder publish mtor-autophagy system neuronal cell death

Schema {πŸ—ΊοΈ}

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         headline:The impact of DAPK1 and mTORC1 signaling association on autophagy in cancer
         description:The autophagy pathway is used by eukaryotic cells to maintain metabolic homeostasis. Autophagy has two functions in cancerous cells which could inhibit tumorigenesis or lead to cancer progression by increasing cell survival and proliferation. In this review article, Web of Science, PubMed, Scopus, Β and Google Scholar were searched and summarized published studies to explore the relationship between DAPK1 and mTORC1 signaling association on autophagy in cancer. Autophagy is managed through various proteins including the mTOR, which is two separated structural and functional complexes known as mTORC1 and mTORC2. MTORC1 is an important component of the regulatory pathway affecting numerous cellular functions including proliferation, migration, invasion, and survival. This protein plays a key role in human cancers. The activity level of mTORC1 is regulated by the death-associated protein kinases (DAPks) family, especially DAPK1. In many cancers, DAPK1 acts as a tumor suppressor which can be attributed to its ability to suppress cellular transformation and to inhibit metastasis. A deep investigation not only will reveal more about the function of DAPK1 but also might provide insights into novel therapies aimed to modulate the autophagy pathway in cancer and to achieve better cancer therapy.
         datePublished:2022-01-27T00:00:00Z
         dateModified:2022-01-27T00:00:00Z
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            Animal Anatomy / Morphology / Histology
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      headline:The impact of DAPK1 and mTORC1 signaling association on autophagy in cancer
      description:The autophagy pathway is used by eukaryotic cells to maintain metabolic homeostasis. Autophagy has two functions in cancerous cells which could inhibit tumorigenesis or lead to cancer progression by increasing cell survival and proliferation. In this review article, Web of Science, PubMed, Scopus, Β and Google Scholar were searched and summarized published studies to explore the relationship between DAPK1 and mTORC1 signaling association on autophagy in cancer. Autophagy is managed through various proteins including the mTOR, which is two separated structural and functional complexes known as mTORC1 and mTORC2. MTORC1 is an important component of the regulatory pathway affecting numerous cellular functions including proliferation, migration, invasion, and survival. This protein plays a key role in human cancers. The activity level of mTORC1 is regulated by the death-associated protein kinases (DAPks) family, especially DAPK1. In many cancers, DAPK1 acts as a tumor suppressor which can be attributed to its ability to suppress cellular transformation and to inhibit metastasis. A deep investigation not only will reveal more about the function of DAPK1 but also might provide insights into novel therapies aimed to modulate the autophagy pathway in cancer and to achieve better cancer therapy.
      datePublished:2022-01-27T00:00:00Z
      dateModified:2022-01-27T00:00:00Z
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      sameAs:https://doi.org/10.1007/s11033-022-07154-1
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         Cancer
         DAPK1
         mTORC1
         Animal Biochemistry
         Animal Anatomy / Morphology / Histology
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      name:Clinical Biochemistry Research Center, Basic Health Sciences Institute, Shahrekord University of Medical Sciences, Shahrekord, Iran
      name:Young Researchers and Elite Club, Najafabad Branch, Islamic Azad University, Najafabad, Iran
      name:Cellular and Molecular Research Center, Basic Health Sciences Institute, Shahrekord University of Medical Sciences, Shahrekord, Iran
      name:Department of Medical Laboratory Sciences, School of Allied Medical Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran
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