4.8 Article

Molecular Mechanisms for CFIm-Mediated Regulation of mRNA Alternative Polyadenylation

Journal

MOLECULAR CELL
Volume 69, Issue 1, Pages 62-+

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2017.11.031

Keywords

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Funding

  1. NIH [GM090056, CA177651, AI052014]
  2. American Cancer Society [RSG-12-186]

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Alternative mRNA processing is a critical mechanism for proteome expansion and gene regulation in higher eukaryotes. The SR family proteins play important roles in splicing regulation. Intriguingly, mammalian genomes encode many poorly characterized SR-like proteins, including subunits of the mRNA 30-processing factor CFIm, CFIm68 and CFIm59. Here we demonstrate that CFIm functions as an enhancer-dependent activator of mRNA 30 processing. CFIm regulates global alternative polyadenylation (APA) by specifically binding and activating enhancer-containing poly(A) sites (PASs). Importantly, the CFIm activator functions are mediated by the arginine-serine repeat (RS) domains of CFIm68/59, which bind specifically to an RS-like region in the CPSF subunit Fip1, and this interaction is inhibited by CFIm68/59 hyperphosphorylation. The remarkable functional similarities between CFIm and SR proteins suggest that interactions between RS-like domains in regulatory and core factors may provide a common activation mechanism for mRNA 30 processing, splicing, and potentially other steps in RNA metabolism.

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