4.8 Article

Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation

期刊

NUCLEIC ACIDS RESEARCH
卷 48, 期 7, 页码 3935-3948

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkaa097

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资金

  1. National Key Research and Development Program of China [2018YFA0106902]
  2. National Natural Science Foundation of China [31430021, 81874052, 81672275, 31871297, 81670143, 81900701]
  3. Key Project of Chinese Ministry of Education [311015]
  4. National Basic Research Program of China (973 Program) [2015CB943303]
  5. Nation Key Research and Development Program of China [2016YFC13038000]
  6. Natural Science Foundation of Jilin Province [20150101176JC, 20180101117JC, 20130413010GH]
  7. Provincial Science Fund of Jilin Province Development and Reform Commission [2014N147, 2017C022]
  8. California Institute of Regenerative Medicine (CIRM) [RT2-01942]
  9. United States (U.S.) Department of Veterans Affairs, Biomedical Laboratory Research and Development Service [BX002905]
  10. Research on Chronic Noncommunicable Diseases Prevention andControl ofNationalMinistry of Science and Technology [2016YFC1303804]
  11. National Health Development Planning Commission Major Disease Prevention and Control of Science and Technology Plan of Action, Cancer Prevention and Control [ZX-07C2016004]

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Formation of a pluripotency-specific chromatin network is a critical event in reprogramming somatic cells into pluripotent status. To characterize the regulatory components in this process, we used 'chromatin RNA in situ reverse transcription sequencing' (CRIST-seq) to profile RNA components that interact with the pluripotency master gene Oct4. Using this approach, we identified a novel nuclear lncRNA 0121,16 that was closely involved in the initiation of reprogramming. Oplr16 not only interacted with the Oct4 promoter and regulated its activity, but it was also specifically activated during reprogramming to pluripotency. Active expression of Oplr16 was required for optimal maintenance of pluripotency in embryonic stem cells. Oplr16 was also able to enhance reprogramming of fibroblasts into pluripotent cells. RNA reverse transcription-associated trap sequencing (RAT-seq) indicated that Oplr16 interacted with multiple target genes related to stem cell self-renewal. Of note, Oplr16 utilized its 3'-fragment to recruit the chromatin factor SMC1 to orchestrate pluripotency-specific intrachromosomal looping. After binding to the Oct4 promoter, Oplr16 recruited TET2 to induce DNA demethylation and activate Oct4 in fibroblasts, leading to enhanced reprogramming. These data suggest that Oplr16 may act as a pivotal chromatin factor to control stem cell fate by modulating chromatin architecture and DNA demethylation.

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