Cargando…

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

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 in...

Descripción completa

Detalles Bibliográficos
Autores principales: Jia, Lin, Wang, Yichen, Wang, Cong, Du, Zhonghua, Zhang, Shilin, Wen, Xue, Zhou, Lei, Li, Hui, Chen, Huiling, Li, Dan, Zhang, Songling, Li, Wei, Xu, Wei, Hoffman, Andrew R, Cui, Jiuwei, Hu, Ji-Fan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144914/
https://www.ncbi.nlm.nih.gov/pubmed/32055844
http://dx.doi.org/10.1093/nar/gkaa097
_version_ 1783519903966298112
author Jia, Lin
Wang, Yichen
Wang, Cong
Du, Zhonghua
Zhang, Shilin
Wen, Xue
Zhou, Lei
Li, Hui
Chen, Huiling
Li, Dan
Zhang, Songling
Li, Wei
Xu, Wei
Hoffman, Andrew R
Cui, Jiuwei
Hu, Ji-Fan
author_facet Jia, Lin
Wang, Yichen
Wang, Cong
Du, Zhonghua
Zhang, Shilin
Wen, Xue
Zhou, Lei
Li, Hui
Chen, Huiling
Li, Dan
Zhang, Songling
Li, Wei
Xu, Wei
Hoffman, Andrew R
Cui, Jiuwei
Hu, Ji-Fan
author_sort Jia, Lin
collection PubMed
description 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 Oplr16 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.
format Online
Article
Text
id pubmed-7144914
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-71449142020-04-13 Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation Jia, Lin Wang, Yichen Wang, Cong Du, Zhonghua Zhang, Shilin Wen, Xue Zhou, Lei Li, Hui Chen, Huiling Li, Dan Zhang, Songling Li, Wei Xu, Wei Hoffman, Andrew R Cui, Jiuwei Hu, Ji-Fan Nucleic Acids Res RNA and RNA-protein complexes 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 Oplr16 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. Oxford University Press 2020-04-17 2020-02-14 /pmc/articles/PMC7144914/ /pubmed/32055844 http://dx.doi.org/10.1093/nar/gkaa097 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA and RNA-protein complexes
Jia, Lin
Wang, Yichen
Wang, Cong
Du, Zhonghua
Zhang, Shilin
Wen, Xue
Zhou, Lei
Li, Hui
Chen, Huiling
Li, Dan
Zhang, Songling
Li, Wei
Xu, Wei
Hoffman, Andrew R
Cui, Jiuwei
Hu, Ji-Fan
Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title_full Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title_fullStr Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title_full_unstemmed Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title_short Oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and TET2-mediated DNA demethylation
title_sort oplr16 serves as a novel chromatin factor to control stem cell fate by modulating pluripotency-specific chromosomal looping and tet2-mediated dna demethylation
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144914/
https://www.ncbi.nlm.nih.gov/pubmed/32055844
http://dx.doi.org/10.1093/nar/gkaa097
work_keys_str_mv AT jialin oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT wangyichen oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT wangcong oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT duzhonghua oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT zhangshilin oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT wenxue oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT zhoulei oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT lihui oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT chenhuiling oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT lidan oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT zhangsongling oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT liwei oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT xuwei oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT hoffmanandrewr oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT cuijiuwei oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation
AT hujifan oplr16servesasanovelchromatinfactortocontrolstemcellfatebymodulatingpluripotencyspecificchromosomalloopingandtet2mediateddnademethylation