Cohesin controls X chromosome structure remodeling and X-reactivation during mouse iPSC-reprogramming

Author:

Generoso Serena F.1,Neguembor Maria Victoria1ORCID,Hershberg Elliot A.2,Sadreyev Ruslan I.34,Kurimoto Kazuki567,Yabuta Yukihiro567,Ricci Raffaele1,Audergon Pauline1,Bauer Moritz8,Saitou Mitinori567,Hochedlinger Konrad39,Beliveau Brian J.2ORCID,Cosma Maria Pia11011,Lee Jeannie T.312,Payer Bernhard110ORCID

Affiliation:

1. Centre for Genomic Regulation, The Barcelona Institute of Science and Technology, Barcelona 08003, Spain

2. Department of Genome Sciences, University of Washington, Seattle, WA 98195

3. Department of Molecular Biology, Massachusetts General Hospital, Boston, MA 02114

4. Department of Pathology, Massachusetts General Hospital, Boston, MA 02115

5. Institute for the Advanced Study of Human Biology, Kyoto University, Kyoto 606-8501, Japan

6. Department of Anatomy and Cell Biology, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan

7. Center for iPS Cell Research and Application, Kyoto University, Kyoto 606-8507, Japan

8. Oncode Institute, Hubrecht Institute, Royal Netherlands Academy of Arts and Sciences and University Medical Center Utrecht, Utrecht 3584, The Netherlands

9. Cancer Center and Center for Regenerative Medicine, Massachusetts General Hospital, Boston, MA 02114

10. Universitat Pompeu Fabra, Barcelona 08003, Spain

11. Institució Catalana de Recerca i Estudis Avançats, Barcelona, 08010 Spain

12. Department of Genetics, The Blavatnik Institute Harvard Medical School, Boston, MA 02114

Abstract

Reactivation of the inactive X chromosome is a hallmark epigenetic event during reprogramming of mouse female somatic cells to induced pluripotent stem cells (iPSCs). This involves global structural remodeling from a condensed, heterochromatic into an open, euchromatic state, thereby changing a transcriptionally inactive into an active chromosome. Despite recent advances, very little is currently known about the molecular players mediating this process and how this relates to iPSC-reprogramming in general. To gain more insight, here we perform a RNAi-based knockdown screen during iPSC-reprogramming of mouse fibroblasts. We discover factors important for X chromosome reactivation (XCR) and iPSC-reprogramming. Among those, we identify the cohesin complex member SMC1a as a key molecule with a specific function in XCR, as its knockdown greatly affects XCR without interfering with iPSC-reprogramming. Using super-resolution microscopy, we find SMC1a to be preferentially enriched on the active compared with the inactive X chromosome and that SMC1a is critical for the decompacted state of the active X. Specifically, depletion of SMC1a leads to contraction of the active X both in differentiated and in pluripotent cells, where it normally is in its most open state. In summary, we reveal cohesin as a key factor for remodeling of the X chromosome from an inactive to an active structure and that this is a critical step for XCR during iPSC-reprogramming.

Funder

HHS | NIH | Office of Extramural Research, National Institutes of Health

spanish ministry of science and innovation

HHS | National Institutes of Health

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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