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Role of 3'-untranslated region translational control in cancer development, diagnostics and treatment 被引量:6

Role of 3'-untranslated region translational control in cancer development, diagnostics and treatment
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摘要 The messenger RNA 3'-untranslated region(3'UTR)plays an important role in regulation of gene expres-sion on the posttranscriptional level. The 3'UTR con-trols gene expression via orchestrated interactionbetween the structural components of mRNAs(cis-ele-ment) and the specific trans-acting factors(RNA bind-ing proteins and non-coding RNAs). The crosstalk ofthese factors is based on the binding sequences and/or direct protein-protein interaction, or just functionalinteraction. Much new evidence that has accumulatedsupports the idea that several RNA binding factors canbind to common mRNA targets: to the non-overlappingbinding sites or to common sites in a competitive fash-ion. Various factors capable of binding to the sameRNA can cooperate or be antagonistic in their actions.The outcome of the collective function of all factorsbound to the same mRNA 3'UTR depends on manycircumstances, such as their expression levels, affinity to the binding sites, and localization in the cell, which can be controlled by various physiological conditions. Moreover, the functional and/or physical interactions of the factors binding to 3'UTR can change the character of their actions. These interactions vary during the cell cycle and in response to changing physiological condi-tions. Abnormal functioning of the factors can lead to disease. In this review we will discuss how alterations of these factors or their interaction can affect cancer development and promote or enhance the malignant phenotype of cancer cells. Understanding these altera-tions and their impact on 3'UTR-directed posttran-scriptional gene regulation will uncover promising new targets for therapeutic intervention and diagnostics. We will also discuss emerging new tools in cancer di-agnostics and therapy based on 3'UTR binding factors and approaches to improve them. The messenger RNA 3’-untranslated region(3’UTR)plays an important role in regulation of gene expres-sion on the posttranscriptional level. The 3’UTR con-trols gene expression via orchestrated interactionbetween the structural components of mRNAs(cis-ele-ment) and the specific trans-acting factors(RNA bind-ing proteins and non-coding RNAs). The crosstalk ofthese factors is based on the binding sequences and/or direct protein-protein interaction, or just functionalinteraction. Much new evidence that has accumulatedsupports the idea that several RNA binding factors canbind to common mRNA targets: to the non-overlappingbinding sites or to common sites in a competitive fash-ion. Various factors capable of binding to the sameRNA can cooperate or be antagonistic in their actions.The outcome of the collective function of all factorsbound to the same mRNA 3’UTR depends on manycircumstances, such as their expression levels, affinity to the binding sites, and localization in the cell, which can be controlled by various physiological conditions. Moreover, the functional and/or physical interactions of the factors binding to 3’UTR can change the character of their actions. These interactions vary during the cell cycle and in response to changing physiological condi-tions. Abnormal functioning of the factors can lead to disease. In this review we will discuss how alterations of these factors or their interaction can affect cancer development and promote or enhance the malignant phenotype of cancer cells. Understanding these altera-tions and their impact on 3’UTR-directed posttran-scriptional gene regulation will uncover promising new targets for therapeutic intervention and diagnostics. We will also discuss emerging new tools in cancer di-agnostics and therapy based on 3’UTR binding factors and approaches to improve them.
出处 《World Journal of Biological Chemistry》 CAS 2014年第1期40-57,共18页 世界生物化学杂志(英文版)(电子版)
关键词 Translational control 3&#x02019 -untranslated region MICRORNAS RNA binding proteins CANCER Translational control 3’-untranslated region MicroRNAs RNA binding proteins Cancer
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参考文献10

  • 1David E. Cohn,Muller Fabbri,Nicola Valeri,Hansjuerg Alder,Iouri Ivanov,Chang-Gong Liu,Carlo M. Croce,Kimberly E. Resnick.Comprehensive miRNA profiling of surgically staged endometrial cancer[J]. American Journal of Obstetrics and Gynecology . 2010 (6)
  • 2Kalluri, Raghu,Weinberg, Robert A.The basics of epithelial-mesenchymal transition[J]. Journal of Clinical Investigation . 2009 (6)
  • 3Yong Sun Lee,Anindya Dutta.MicroRNAs in Cancer[J]. Annual Review of Pathology: Mechanisms of Disease . 2009
  • 4Joshua T. Mendell.miRiad Roles for the miR-17-92 Cluster in Development and Disease[J]. Cell . 2008 (2)
  • 5Andrea Ventura,Amanda G. Young,Monte M. Winslow,Laura Lintault,Alex Meissner,Stefan J. Erkeland,Jamie Newman,Roderick T. Bronson,Denise Crowley,James R. Stone,Rudolf Jaenisch,Phillip A. Sharp,Tyler Jacks.Targeted Deletion Reveals Essential and Overlapping Functions of the miR-17~92 Family of miRNA Clusters[J]. Cell . 2008 (5)
  • 6Fanyin Meng,Roger Henson,Hania Wehbe–Janek,Kalpana Ghoshal,Samson T. Jacob,Tushar Patel.MicroRNA-21 Regulates Expression of the PTEN Tumor Suppressor Gene in Human Hepatocellular Cancer[J]. Gastroenterology . 2007 (2)
  • 7M. Scheffler,E. Konze,V. Dries,U. Drebber,P. Schirmacher,F. Schulze,I. Wedemeyer,H.P. Dienes,M. Odenthal,H. Varnholt. MICRO-RNA GENE EXPRESSION PROFILE OF HCV-ASSOCIATED HEPATOCELLULAR CARCINOMA[J]. Journal of Hepatology . 2007
  • 8Julia Schultz,Peter Lorenz,Gerd Gross,Saleh Ibrahim,Manfred Kunz.MicroRNA let-7b targets important cell cycle molecules in malignant melanoma cells and interferes with anchorage-independent growth[J].Cell Research,2008,18(5):549-557. 被引量:46
  • 9Esquela-Kerscher A,Slack FJ.Oncomirs-microRNAs with a role in cancerNature Reviews Cancer,2006.
  • 10Zhao JJ,Lin J,Lwin T,et al.MicroRNA expression profile and identification of miR-29 as a prognostic marker and pathogenetic factor by targeting CDK6 in mantle cell lymphoma. Blood . 2010

二级参考文献23

  • 1Barrel DP. MicroRNAs: genomics, biogenesis, mechanism, and function. Cell 2004; 116:281-297.
  • 2Esquela-Kerscher A, Slack FJ. Oncomirs - microRNAs with a role in cancer. Nat Rev Cancer 2006; 6:259-269.
  • 3Johnson SM, Grosshans H, Shingara J, et al. R.AS is regulated by the let-7 microRNA family. Cell 2005; 120:635-647.
  • 4Michael MZ, O'Connor SM, van Hoist Pellekaan NG, Young GP, James RJ. Reduced accumulation of specific microRNAs in colorectal neoplasia. Mol Cancer Res 2003; 1:882-891.
  • 5Iorio MV, Ferracin M, Liu CG, et al. MicroRNA gene expression deregulation in human breast cancer. Cancer Res 2005; 65:7065- 7070.
  • 6Volinia S, Calin GA, Liu CG, et al. A microRNA expression signature of human solid tumors defines cancer gene targets. Proc Natl Acad Sci USA 2006; 103:2257-2261.
  • 7Gaur A, Jewell DA, Liang Y, et al. Characterization ofmicroRNA expression levels and their biological correlates in human cancer cell lines. Cancer Res 2007; 67:2456-2468.
  • 8Lu J, Getz G, Miska EA, et al. MicroRNA expression profiles classify human cancers. Nature 2005; 435:834-838.
  • 9Zhang L, Huang J, Yang N, et al. microRNAs exhibit high frequency genomic alterations in human cancer. Proc Natl Acad Sci USA 2006; 103:9136-9141.
  • 10Miller A J, Mihm MC Jr. Melanoma. N Engl J Med 2006; 355:51- 65.

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