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MBNL proteins repress ES-cell-specific alternative splicing and reprogramming

Authors :
Han, Hong
Irimia, Manuel
Ross, P. Joel
Sung, Hoon-Ki
Alipanahi, Babak
David, Laurent
Golipour, Azadeh
Gabut, Mathieu
Michael, Iacovos P.
Nachman, Emil N.
Wang, Eric
Trcka, Dan
Thompson, Tadeo
O'Hanlon, Dave
Slobodeniuc, Valentina
Barbosa-Morais, Nuno L.
Burge, Christopher B.
Moffat, Jason
Frey, Brendan J.
Nagy, Andras
Ellis, James
Wrana, Jeffrey L.
Blencowe, Benjamin J.
Source :
Nature. June 13, 2013, Vol. 498 Issue 7453, p241, 8 p.
Publication Year :
2013

Abstract

Previous investigations of the core gene regulatory circuitry that controls the pluripotency of embryonic stem (ES) cells have largely focused on the roles of transcription, chromatin and non-coding RNA regulators (1-3). Alternative splicing represents a widely acting mode of gene regulation (4-8), yet its role in regulating ES-cell pluripotency and differentiation is poorly understood. Here we identify the muscleblind-like RNA binding proteins, MBNL1 and MBNL2, as conserved and direct negative regulators of a large program of cassette exon alternative splicing events that are differentially regulated between ES cells and other cell types. Knockdown of MBNL proteins in differentiated cells causes switching to an ES-cell-like alternative splicing pattern for approximately half of these events, whereas overexpression of MBNL proteins in ES cells promotes differentiated-cell-like alternative splicing patterns. Among the MBNL-regulated events is an ES-cell-specific alternative splicing switch in the forkhead family transcription factor FOXP1 that controls pluripotency (9). Consistent with a central and negative regulatory role for MBNL proteins in pluripotency, their knockdown significantly enhances the expression of key pluripotency genes and the formation of induced pluripotent stem cells during somatic cell reprogramming.<br />A core set of transcription factors that includes OCT4 (also called POU5F1), NANOG and SOX2, together with specific microRNAs and long non-coding RNAs, control the expression of genes required for [...]

Details

Language :
English
ISSN :
00280836
Volume :
498
Issue :
7453
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.334042561