Poly(C)-binding proteins as transcriptional regulators of gene expression
Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They can be divided into two groups: hnRNP K and PCBP1-4. These proteins are involved mainly in various posttranscriptional regulations (e.g., mRNA...
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Published in | Biochemical and biophysical research communications Vol. 380; no. 3; pp. 431 - 436 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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United States
Elsevier Inc
13.03.2009
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Abstract | Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They can be divided into two groups: hnRNP K and PCBP1-4. These proteins are involved mainly in various posttranscriptional regulations (e.g., mRNA stabilization or translational activation/silencing). In this review, we summarize and discuss how PCBPs act as transcriptional regulators by binding to specific elements in gene promoters that interact with the RNA polymerase II transcription machinery. Transcriptional regulation of PCBPs might itself be regulated by their localization within the cell. For example, activation by p21-activated kinase 1 induces increased nuclear retention of PCBP1, as well as increased promoter activity. PCBPs can function as a signal-dependent and coordinated regulator of transcription in eukaryotic cells. We address the molecular mechanisms by which PCBPs binding to single- and double-stranded DNA mediates gene expression. |
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AbstractList | Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They can be divided into two groups: hnRNP K and PCBP1-4. These proteins are involved mainly in various posttranscriptional regulations (e.g., mRNA stabilization or translational activation/silencing). In this review, we summarize and discuss how PCBPs act as transcriptional regulators by binding to specific elements in gene promoters that interact with the RNA polymerase II transcription machinery. Transcriptional regulation of PCBPs might itself be regulated by their localization within the cell. For example, activation by p21-activated kinase 1 induces increased nuclear retention of PCBP1, as well as increased promoter activity. PCBPs can function as a signal-dependent and coordinated regulator of transcription in eukaryotic cells. We address the molecular mechanisms by which PCBPs binding to single- and double-stranded DNA mediates gene expression. Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They can be divided into two groups: hnRNP K and PCBP1-4. These proteins are involved mainly in various posttranscriptional regulations (e.g., mRNA stabilization or translational activation/silencing). In this review, we summarize and discuss how PCBPs act as transcriptional regulators by binding to specific elements in gene promoters that interact with the RNA polymerase II transcription machinery. Transcriptional regulation of PCBPs might itself be regulated by their localization within the cell. For example, activation by p21-activated kinase 1 induces increased nuclear retention of PCBP1, as well as increased promoter activity. PCBPs can function as a signal-dependent and coordinated regulator of transcription in eukaryotic cells. We address the molecular mechanisms by which PCBPs binding to single- and double-stranded DNA mediates gene expression.Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They can be divided into two groups: hnRNP K and PCBP1-4. These proteins are involved mainly in various posttranscriptional regulations (e.g., mRNA stabilization or translational activation/silencing). In this review, we summarize and discuss how PCBPs act as transcriptional regulators by binding to specific elements in gene promoters that interact with the RNA polymerase II transcription machinery. Transcriptional regulation of PCBPs might itself be regulated by their localization within the cell. For example, activation by p21-activated kinase 1 induces increased nuclear retention of PCBP1, as well as increased promoter activity. PCBPs can function as a signal-dependent and coordinated regulator of transcription in eukaryotic cells. We address the molecular mechanisms by which PCBPs binding to single- and double-stranded DNA mediates gene expression. |
Author | Hwang, Cheol Kyu Law, Ping-Yee Wei, Li-Na Loh, Horace H. Choi, Hack Sun Song, Kyu Young |
Author_xml | – sequence: 1 givenname: Hack Sun surname: Choi fullname: Choi, Hack Sun email: choix074@umn.edu – sequence: 2 givenname: Cheol Kyu surname: Hwang fullname: Hwang, Cheol Kyu – sequence: 3 givenname: Kyu Young surname: Song fullname: Song, Kyu Young – sequence: 4 givenname: Ping-Yee surname: Law fullname: Law, Ping-Yee – sequence: 5 givenname: Li-Na surname: Wei fullname: Wei, Li-Na – sequence: 6 givenname: Horace H. surname: Loh fullname: Loh, Horace H. |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/19284986$$D View this record in MEDLINE/PubMed https://www.osti.gov/biblio/21255922$$D View this record in Osti.gov |
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Snippet | Poly(C)-binding proteins (PCBPs) are generally known as RNA-binding proteins that interact in a sequence-specific fashion with single-stranded poly(C). They... |
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SubjectTerms | 60 APPLIED LIFE SCIENCES Amino Acid Sequence Animals DNA DNA-binding proteins Gene Expression Regulation GENE REGULATION GENES Humans Mice Molecular Sequence Data P21-activated kinase 1 Poly C - metabolism Poly(C)-binding proteins Promoter Regions, Genetic PROMOTERS Protein Conformation Protein Processing, Post-Translational RNA RNA POLYMERASES RNA-Binding Proteins - chemistry RNA-Binding Proteins - metabolism SIGNALS TRANSCRIPTION Transcription Factors - chemistry Transcription Factors - metabolism Transcriptional regulation |
Title | Poly(C)-binding proteins as transcriptional regulators of gene expression |
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