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LINK . SPRINGER . COM {}

  1. Analyzed Page
  2. Matching Content Categories
  3. CMS
  4. Monthly Traffic Estimate
  5. How Does Link.springer.com Make Money
  6. Keywords
  7. Topics
  8. Questions
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We are analyzing https://link.springer.com/article/10.1186/s13059-022-02674-2.

Title:
Non-AUG translation initiation in mammals | Genome Biology
Description:
Recent proteogenomic studies revealed extensive translation outside of annotated protein coding regions, such as non-coding RNAs and untranslated regions of mRNAs. This non-canonical translation is largely due to start codon plurality within the same RNA. This plurality is often due to the failure of some scanning ribosomes to recognize potential start codons leading to initiation downstream—a process termed leaky scanning. Codons other than AUG (non-AUG) are particularly leaky due to their inefficiency. Here we discuss our current understanding of non-AUG initiation. We argue for a near-ubiquitous role of non-AUG initiation in shaping the dynamic composition of mammalian proteomes.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {📚}

  • Education
  • Science
  • Business & Finance

Content Management System {📝}

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 {📈}

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 5,000,019 visitors per month in the current month.
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How Does Link.springer.com Make Money? {💸}

We don’t know how the website earns money.

Some websites aren't about earning revenue; they're built to connect communities or raise awareness. There are numerous motivations behind creating websites. This might be one of them. Link.springer.com could have a money-making trick up its sleeve, but it's undetectable for now.

Keywords {🔍}

pubmed, initiation, translation, article, nonaug, google, scholar, cas, central, codon, codons, eif, start, aug, protein, rna, cell, ribosome, mrna, downstream, factor, biol, scanning, upstream, eukaryotic, context, elongation, selection, human, factors, cug, regulation, open, mrnas, mol, proteoforms, reading, cells, nucleotide, recognition, tiss, uorfs, specific, fig, res, ribosomes, mammalian, mechanism, ribosomal, efficient,

Topics {✒️}

aug-initiated n-terminal extensions enhances oestrogen-dependent transcription amp-activated protein kinase p-site enables met-trnai n-terminal protein extensions noncanonical dna-binding site human eif5-mimic protein human bag-1/rap46 protein article download pdf eif1/bzw/eif5 “stringency” factors mckusick-kaufman syndrome transcript upstream orf-encoded asdurf n-terminally extended myc yield n-terminally extended s-adenosylmethionine decarboxylase mrna n-terminally distinct protein site-specific ribosomal pauses n-terminally extended proteoform dual-coding gene mief1 related subjects confirming dinesh-kumar polyproline-specific tripeptide sequences ribosome pre-initiation complex promote start-codon recognition ca2+/calmodulin-dependent phosphorylation evolutionary selection acting full access ribosome p-site close sui/sui alleles eif5a-dependent pause site full size image enabling gene-specific regulation main aug-initiated orf describes transcriptome-wide regulation single aug-initiated orf protein-specific translation control rna binding proteins aug-initiated protein isoforms cognate charged trnas start codon selection human sorf-encoded polypeptides cug-initiated protein polgarf todd pk aug-initiated short uorf c-terminal domain aug initiation transcriptome-wide helicase ded1p controls alternative reading frames standard cap-dependent mechanism n-terminal domain

Questions {❓}

  • How do eucaryotic ribosomes select initiation regions in messenger RNA?
  • What are the functional and phenotypic consequences of translation of these sORFs?
  • Why is start codon selection so precise in eukaryotes?

Schema {🗺️}

WebPage:
      mainEntity:
         headline:Non-AUG translation initiation in mammals
         description:Recent proteogenomic studies revealed extensive translation outside of annotated protein coding regions, such as non-coding RNAs and untranslated regions of mRNAs. This non-canonical translation is largely due to start codon plurality within the same RNA. This plurality is often due to the failure of some scanning ribosomes to recognize potential start codons leading to initiation downstream—a process termed leaky scanning. Codons other than AUG (non-AUG) are particularly leaky due to their inefficiency. Here we discuss our current understanding of non-AUG initiation. We argue for a near-ubiquitous role of non-AUG initiation in shaping the dynamic composition of mammalian proteomes.
         datePublished:2022-05-09T00:00:00Z
         dateModified:2022-05-09T00:00:00Z
         pageStart:1
         pageEnd:17
         license:http://creativecommons.org/publicdomain/zero/1.0/
         sameAs:https://doi.org/10.1186/s13059-022-02674-2
         keywords:
            Animal Genetics and Genomics
            Human Genetics
            Plant Genetics and Genomics
            Microbial Genetics and Genomics
            Bioinformatics
            Evolutionary Biology
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         isPartOf:
            name:Genome Biology
            issn:
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                        name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS, Moscow, Russia
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ScholarlyArticle:
      headline:Non-AUG translation initiation in mammals
      description:Recent proteogenomic studies revealed extensive translation outside of annotated protein coding regions, such as non-coding RNAs and untranslated regions of mRNAs. This non-canonical translation is largely due to start codon plurality within the same RNA. This plurality is often due to the failure of some scanning ribosomes to recognize potential start codons leading to initiation downstream—a process termed leaky scanning. Codons other than AUG (non-AUG) are particularly leaky due to their inefficiency. Here we discuss our current understanding of non-AUG initiation. We argue for a near-ubiquitous role of non-AUG initiation in shaping the dynamic composition of mammalian proteomes.
      datePublished:2022-05-09T00:00:00Z
      dateModified:2022-05-09T00:00:00Z
      pageStart:1
      pageEnd:17
      license:http://creativecommons.org/publicdomain/zero/1.0/
      sameAs:https://doi.org/10.1186/s13059-022-02674-2
      keywords:
         Animal Genetics and Genomics
         Human Genetics
         Plant Genetics and Genomics
         Microbial Genetics and Genomics
         Bioinformatics
         Evolutionary Biology
      image:
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            1474-760X
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         name:BioMed Central
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            type:ImageObject
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      author:
            name:Dmitry E. Andreev
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                  name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS
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                     name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS, Moscow, Russia
                     type:PostalAddress
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                     name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
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                  name:Lomonosov Moscow State University
                  address:
                     name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
                     type:PostalAddress
                  type:Organization
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            name:Ivan N. Shatsky
            affiliation:
                  name:Lomonosov Moscow State University
                  address:
                     name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
                     type:PostalAddress
                  type:Organization
            type:Person
            name:Pavel V. Baranov
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                  name:University College Cork
                  address:
                     name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
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         name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
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         name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
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         name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
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      affiliation:
            name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS
            address:
               name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS, Moscow, Russia
               type:PostalAddress
            type:Organization
            name:Lomonosov Moscow State University
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               name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
               type:PostalAddress
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      email:[email protected]
      name:Gary Loughran
      affiliation:
            name:University College Cork
            address:
               name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
               type:PostalAddress
            type:Organization
      name:Alla D. Fedorova
      affiliation:
            name:University College Cork
            address:
               name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
               type:PostalAddress
            type:Organization
      name:Maria S. Mikhaylova
      affiliation:
            name:Lomonosov Moscow State University
            address:
               name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
               type:PostalAddress
            type:Organization
      name:Ivan N. Shatsky
      affiliation:
            name:Lomonosov Moscow State University
            address:
               name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
               type:PostalAddress
            type:Organization
      name:Pavel V. Baranov
      url:http://orcid.org/0000-0001-9017-0270
      affiliation:
            name:University College Cork
            address:
               name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
               type:PostalAddress
            type:Organization
      email:[email protected]
PostalAddress:
      name:Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, RAS, Moscow, Russia
      name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
      name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland
      name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:School of Biochemistry and Cell Biology, University College Cork, Cork, Ireland

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