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PCGF6 regulates stem cell pluripotency as a transcription activator via super-enhancer dependent chromatin interactions.


ABSTRACT: Polycomb group (PcG) ring finger protein 6 (PCGF6), though known as a member of the transcription-repressing complexes, PcG, also has activation function in regulating pluripotency gene expression. However, the mechanism underlying the activation function of PCGF6 is poorly understood. Here, we found that PCGF6 co-localizes to gene activation regions along with pluripotency factors such as OCT4. In addition, PCGF6 was recruited to a subset of the super-enhancer (SE) regions upstream of cell cycle-associated genes by OCT4, and increased their expression. By combining with promoter capture Hi-C data, we found that PCGF6 activates cell cycle genes by regulating SE-promoter interactions via 3D chromatin. Our findings highlight a novel mechanism of PcG protein in regulating pluripotency, and provide a research basis for the therapeutic application of pluripotent stem cells.

SUBMITTER: Huang X 

PROVIDER: S-EPMC6776568 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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PCGF6 regulates stem cell pluripotency as a transcription activator via super-enhancer dependent chromatin interactions.

Huang Xiaona X   Wei Chao C   Li Fenjie F   Jia Lumeng L   Zeng Pengguihang P   Li Jiahe J   Tan Jin J   Sun Tuanfeng T   Jiang Shaoshuai S   Wang Jia J   Tang Xiuxiao X   Zhao Qingquan Q   Liu Bin B   Rong Limin L   Li Cheng C   Ding Junjun J  

Protein & cell 20190430 10


Polycomb group (PcG) ring finger protein 6 (PCGF6), though known as a member of the transcription-repressing complexes, PcG, also has activation function in regulating pluripotency gene expression. However, the mechanism underlying the activation function of PCGF6 is poorly understood. Here, we found that PCGF6 co-localizes to gene activation regions along with pluripotency factors such as OCT4. In addition, PCGF6 was recruited to a subset of the super-enhancer (SE) regions upstream of cell cycl  ...[more]

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