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DNA methylation directs microRNA biogenesis in mammalian cells

Nat Commun.. 2019; 
Glaich O1, Parikh S1, Bell RE1, Mekahel K1, Donyo M1, Leader Y1, Shayevitch R1, Sheinboim D1, Yannai S1, Hollander D1, Melamed Z1,2, Lev-Maor G1, Ast G3, Levy C4.
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Catalog Antibody The following antibodies were used: anti-Drosha (1:200; sc-31159, Santa Cruz Biotechnology), anti-MeCP2 (1:1000; #3456, Cell Signaling) and anti-GAPDH (1:1000; A00191-40, GenScript,). Get A Quote

摘要

MicroRNA (miRNA) biogenesis initiates co-transcriptionally, but how the Microprocessor machinery pinpoints the locations of short precursor miRNA sequences within long flanking regions of the transcript is not known. Here we show that miRNA biogenesis depends on DNA methylation. When the regions flanking the miRNA coding sequence are highly methylated, the miRNAs are more highly expressed, have greater sequence conservation, and are more likely to drive cancer-related phenotypes than miRNAs encoded by unmethylated loci. We show that the removal of DNA methylation from miRNA loci leads to their downregulation. Further, we found that MeCP2 binding to methylated miRNA loci halts RNA polymerase II elongation, leadi... More

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