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Publication : Zc3h13 Regulates Nuclear RNA m<sup>6</sup>A Methylation and Mouse Embryonic Stem Cell Self-Renewal.

First Author  Wen J Year  2018
Journal  Mol Cell Volume  69
Issue  6 Pages  1028-1038.e6
PubMed ID  29547716 Mgi Jnum  J:261823
Mgi Id  MGI:6158697 Doi  10.1016/j.molcel.2018.02.015
Citation  Wen J, et al. (2018) Zc3h13 Regulates Nuclear RNA m(6)A Methylation and Mouse Embryonic Stem Cell Self-Renewal. Mol Cell 69(6):1028-1038.e6
abstractText  N(6)-methyladenosine (m(6)A) is an abundant modification in eukaryotic mRNA, regulating mRNA dynamics by influencing mRNA stability, splicing, export, and translation. However, the precise m(6)A regulating machinery still remains incompletely understood. Here we demonstrate that ZC3H13, a zinc-finger protein, plays an important role in modulating RNA m(6)A methylation in the nucleus. We show that knockdown of Zc3h13 in mouse embryonic stem cell significantly decreases global m(6)A level on mRNA. Upon Zc3h13 knockdown, a great majority of WTAP, Virilizer, and Hakai translocate to the cytoplasm, suggesting that Zc3h13 is required for nuclear localization of the Zc3h13-WTAP-Virilizer-Hakai complex, which is important for RNA m(6)A methylation. Finally, Zc3h13 depletion, as does WTAP, Virilizer, or Hakai, impairs self-renewal and triggers mESC differentiation. Taken together, our findings demonstrate that Zc3h13 plays a critical role in anchoring WTAP, Virilizer, and Hakai in the nucleus to facilitate m(6)A methylation and to regulate mESC self-renewal.
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