Xist Intron 1 Repression by Transcriptional-Activator-Like Effectors Designer Transcriptional Factor Improves Somatic Cell Reprogramming in Mice

Author:

Zhang Jindun123,Gao Xuefei2,Yang Jian2,Fan Xiaoying45,Wang Wei2,Liang Yanfeng1,Fan Lihong1,Han Hongmei1,Xu Xiaorong1,Tang Fuchou45,Bao Siqin1,Liu Pentao2,Li Xihe13ORCID

Affiliation:

1. Research Center for Animal Genetic Resources of Mongolian Plateau, Inner Mongolia University, Hohhot, People’s Republic of China

2. Wellcome Trust Sanger Institute, Cambridge, United Kingdom

3. Inner Mongolia Saikexing Institute of Breeding and Reproductive Biotechnology in Domestic Animal, Hohhot, People’s Republic of China

4. Biodynamic Optical Imaging Center (BIOPIC), Peking University, Beijing, People’s Republic of China

5. College of Life Sciences, Peking University, Beijing, People’s Republic of China

Abstract

Abstract Xist is the master regulator of X chromosome inactivation. In order to further understand the Xist locus in the reprogramming of somatic cells to induced pluripotent stem cells (iPSCs) and in somatic cell nuclear transfer (SCNT), we tested transcription-activator-like effectors-based designer transcriptional factors (dTFs), which were specific to numerous regions at the Xist locus. We report that the selected dTF repressor 6 (R6) binding the intron 1 of Xist, which caused higher H3K9me3 followed by X chromosome opening and repression of X-linked genes in mouse embryonic fibroblasts, rather than affecting Xist expression, substantially improved the iPSC generation and the SCNT preimplantation embryo development. Conversely, the dTF activator targeting the same genomic region of R6 decreased iPSC formation and blocked SCNT-embryo development. These results thus uncover the critical requirement for the Xist locus in epigenetic resetting, which is not directly related to Xist transcription. This may provide a unique route to improving the reprogramming. Stem Cells  2019;37:599–608

Funder

Wellcome Trust

National Natural Science Foundation of China

Ministry of Science and Technology

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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