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Review Article
Alternative Polyadenylation in Human Diseases
Jae-Woong Chang, Hsin-Sung Yeh, Jeongsik Yong
Endocrinol Metab. 2017;32(4):413-421.   Published online December 14, 2017
DOI: https://doi.org/10.3803/EnM.2017.32.4.413
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  • 26 Web of Science
  • 27 Crossref
AbstractAbstract PDFPubReader   

Varying length of messenger RNA (mRNA) 3′-untranslated region is generated by alternating the usage of polyadenylation sites during pre-mRNA processing. It is prevalent through all eukaryotes and has emerged as a key mechanism for controlling gene expression. Alternative polyadenylation (APA) plays an important role for cell growth, proliferation, and differentiation. In this review, we discuss the functions of APA related with various physiological conditions including cellular metabolism, mRNA processing, and protein diversity in a variety of disease models. We also discuss the molecular mechanisms underlying APA regulation, such as variations in the concentration of mRNA processing factors and RNA-binding proteins, as well as global transcriptome changes under cellular signaling pathway.

Citations

Citations to this article as recorded by  
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    Martin Šimon, Špela Mikec, Nicholas M. Morton, Santosh S. Atanur, Simon Horvat, Tanja Kunej
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    JAMA Network Open.2024; 7(4): e247034.     CrossRef
  • Genome-wide screening for genetic variants in polyadenylation signal (PAS) sites in mouse selection lines for fatness and leanness
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    Mammalian Genome.2023; 34(1): 12.     CrossRef
  • Alternative polyadenylation regulation in cardiac development and cardiovascular disease
    Jun Cao, Muge N Kuyumcu-Martinez
    Cardiovascular Research.2023; 119(6): 1324.     CrossRef
  • Alternative polyadenylation reprogramming of MORC2 induced by NUDT21 loss promotes KIRC carcinogenesis
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    JCI Insight.2023;[Epub]     CrossRef
  • Emerging roles of alternative cleavage and polyadenylation (APA) in human disease
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    Journal of Cellular Physiology.2022; 237(1): 149.     CrossRef
  • Fe-S clusters masquerading as zinc finger proteins
    Jordan D. Pritts, Sarah L.J. Michel
    Journal of Inorganic Biochemistry.2022; 230: 111756.     CrossRef
  • Alternative polyadenylation associated with prognosis and therapy in colorectal cancer
    Yi Zhang, Yunfei Xu, Yuzhi Wang
    Scientific Reports.2022;[Epub]     CrossRef
  • Population‐scale genetic control of alternative polyadenylation and its association with human diseases
    Lei Li, Yumei Li, Xudong Zou, Fuduan Peng, Ya Cui, Eric J. Wagner, Wei Li
    Quantitative Biology.2022; 10(1): 44.     CrossRef
  • Comprehensive analysis of alternative polyadenylation regulators concerning CD276 and immune infiltration in bladder cancer
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    BMC Cancer.2022;[Epub]     CrossRef
  • Non-Allelic Homologous Recombination Leading to Premature Transcription Termination in the ARSB Gene as a Novel Cause of Mucopolysaccharidosis Type VI
    Igor Bychkov, Filatova A. Yu, Galina V. Baydakova, Nataliya V. Sikora, Alexandr S. Skretnev, Tabakov V. Yu, Skoblov M. Yu, Zakharova E. Yu
    SSRN Electronic Journal .2022;[Epub]     CrossRef
  • Alternative polyadenylation of mRNA and its role in cancer
    Fuwen Yuan, William Hankey, Eric J. Wagner, Wei Li, Qianben Wang
    Genes & Diseases.2021; 8(1): 61.     CrossRef
  • Animal-APAdb: a comprehensive animal alternative polyadenylation database
    Weiwei Jin, Qizhao Zhu, Yanbo Yang, Wenqian Yang, Dongyang Wang, Jiajun Yang, Xiaohui Niu, Debing Yu, Jing Gong
    Nucleic Acids Research.2021; 49(D1): D47.     CrossRef
  • Emerging cellular and molecular determinants of idiopathic pulmonary fibrosis
    Thị Hằng Giang Phan, Panagiotis Paliogiannis, Gheyath K. Nasrallah, Roberta Giordo, Ali Hussein Eid, Alessandro Giuseppe Fois, Angelo Zinellu, Arduino Aleksander Mangoni, Gianfranco Pintus
    Cellular and Molecular Life Sciences.2021; 78(5): 2031.     CrossRef
  • Alternative polyadenylation: methods, mechanism, function, and role in cancer
    Yi Zhang, Lian Liu, Qiongzi Qiu, Qing Zhou, Jinwang Ding, Yan Lu, Pengyuan Liu
    Journal of Experimental & Clinical Cancer Research.2021;[Epub]     CrossRef
  • Understanding RNA Binding by the Nonclassical Zinc Finger Protein CPSF30, a Key Factor in Polyadenylation during Pre-mRNA Processing
    Jordan D. Pritts, Abdulafeez A. Oluyadi, Weiliang Huang, Geoffrey D. Shimberg, Maureen A. Kane, Angela Wilks, Sarah L. J. Michel
    Biochemistry.2021; 60(10): 780.     CrossRef
  • Shortening of HO1 3′UTRs by Alternative Polyadenylation Suppresses Adipogenesis in 3T3-L1
    Jianwei Cui, Chengping Li, Xiao Cui, Xueyan Liu, Chaoqun Meng, Guoli Zhou
    Journal of Agricultural and Food Chemistry.2021; 69(28): 8038.     CrossRef
  • The DEAD-box RNA helicase SHI2 functions in repression of salt-inducible genes and regulation of cold-inducible gene splicing
    Bangshing Wang, Haoxi Chai, Yingli Zhong, Yun Shen, Wannian Yang, Junping Chen, Zhanguo Xin, Huazhong Shi, Ian Dodd
    Journal of Experimental Botany.2020; 71(4): 1598.     CrossRef
  • Unraveling the RNA Binding Properties of the Iron–Sulfur Zinc Finger Protein CPSF30
    Jordan D. Pritts, Matthew S. Hursey, Jamie L. Michalek, Sharon Batelu, Timothy L. Stemmler, Sarah L. J. Michel
    Biochemistry.2020; 59(8): 970.     CrossRef
  • Stiff matrix instigates type I collagen biogenesis by mammalian cleavage factor I complex-mediated alternative polyadenylation
    Zijing Zhou, Jing Qu, Li He, Yi Zhu, Shan-Zhong Yang, Feng Zhang, Ting Guo, Hong Peng, Ping Chen, Yong Zhou
    JCI Insight.2020;[Epub]     CrossRef
  • PolyA-miner: accurate assessment of differential alternative poly-adenylation from 3′Seq data using vector projections and non-negative matrix factorization
    Hari Krishna Yalamanchili, Callison E Alcott, Ping Ji, Eric J Wagner, Huda Y Zoghbi, Zhandong Liu
    Nucleic Acids Research.2020; 48(12): e69.     CrossRef
  • SNP2APA: a database for evaluating effects of genetic variants on alternative polyadenylation in human cancers
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    Nucleic Acids Research.2020; 48(D1): D226.     CrossRef
  • Template-switching artifacts resemble alternative polyadenylation
    Zsolt Balázs, Dóra Tombácz, Zsolt Csabai, Norbert Moldován, Michael Snyder, Zsolt Boldogkői
    BMC Genomics.2019;[Epub]     CrossRef
  • Tissue‐specific mechanisms of alternative polyadenylation: Testis, brain, and beyond (2018 update)
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    WIREs RNA.2019;[Epub]     CrossRef
  • Alternative cleavage and polyadenylation in health and disease
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    Nature Reviews Genetics.2019; 20(10): 599.     CrossRef
  • The Length of the Expressed 3′ UTR Is an Intermediate Molecular Phenotype Linking Genetic Variants to Complex Diseases
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