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DNA Methylation Regulates Alternative Polyadenylation via CTCF and the Cohesin Complex.


ABSTRACT: Dysregulation of DNA methylation and mRNA alternative cleavage and polyadenylation (APA) are both prevalent in cancer and have been studied as independent processes. We discovered a DNA methylation-regulated APA mechanism when we compared genome-wide DNA methylation and polyadenylation site usage between DNA methylation-competent and DNA methylation-deficient cells. Here, we show that removal of DNA methylation enables CTCF binding and recruitment of the cohesin complex, which, in turn, form chromatin loops that promote proximal polyadenylation site usage. In this DNA demethylated context, either deletion of the CTCF binding site or depletion of RAD21 cohesin complex protein can recover distal polyadenylation site usage. Using data from The Cancer Genome Atlas, we authenticated the relatio

SUBMITTER: Nanavaty V 

PROVIDER: S-EPMC7245569 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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