4.8 Article

Critical Roles of Translation Initiation and RNA Uridylation in Endogenous Retroviral Expression and Neural Differentiation in Pluripotent Stem Cells

期刊

CELL REPORTS
卷 31, 期 9, 页码 -

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CELL PRESS
DOI: 10.1016/j.celrep.2020.107715

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资金

  1. Japanese Society for the Promotion of Science (JSPS)
  2. Ministry of Education, Culture, Sports, Science and Technology (MEXT)
  3. Funding Program for World-Leading Innovative Research and Development in Science and Technology (First Program) of the JSPS
  4. Core Center for iPS Cell Research, Research Center Network for Realization of Regenerative Medicine, MEXT
  5. Japan Foundation for Applied Enzymology
  6. iPS Cell Research Fund
  7. L. K. Whittier Foundation
  8. Roddenberry Foundation
  9. Gladstone Institutes
  10. National Heart, Lung, and Blood Institute (NHLBI), National Institutes of Health (NIH) [U01-HL100406, U01-HL098179, R01-HL130533, R01-HL135358]
  11. National Center for Research Resources grant [RR18928-01]

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Previous studies have suggested that the loss of the translation initiation factor eIF4G1 homolog NAT1 induces excessive self-renewability of naive pluripotent stem cells (PSCs); yet the role of NAT1 in the self-renewal and differentiation of primed PSCs is still unclear Here, we generate a conditional knockout of NAT1 in primed PSCs and use the cells for the functional analyses of NAT1. Our results show that NAT1 is required for the self-renewal and neural differentiation of primed PSCs. In contrast, NAT1 deficiency in naive pluripotency attenuates the differentiation to all cell types. We also find that NAT1 is involved in efficient protein expression of an RNA uridyltransferase, TUT7. TUT7 is involved in the neural differentiation of primed PSCs via the regulation of human endogenous retrovirus accumulation. These data demonstrate the essential roles of NAT1 and TUT7 in the precise transition of stem cell fate.

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