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Krüppel-like factor 5 重编 NANOG 调控网络以激活人类原始多能性特异性 LTR7Ys 并促进原始多能性。

Krüppel-like factor 5 rewires NANOG regulatory network to activate human naive pluripotency specific LTR7Ys and promote naive pluripotency.

机构信息

Division of Human Reproduction and Developmental Genetics, Women's Hospital, and Institute of Genetics, Zhejiang University School of Medicine, Hangzhou 310006, China.

Zhejiang University-University of Edinburgh Institute (ZJU-UoE Institute), Zhejiang University School of Medicine, International Campus, Zhejiang University, 718 East Haizhou Road, Haining 314400, China.

出版信息

Cell Rep. 2022 Aug 23;40(8):111240. doi: 10.1016/j.celrep.2022.111240.

Abstract

Endogenous retroviruses (ERVs) have been reported to participate in pre-implantation development of mammalian embryos. In early human embryogenesis, different ERV sub-families are activated in a highly stage-specific manner. How the specificity of ERV activation is achieved remains largely unknown. Here, we demonstrate the mechanism of how LTR7Ys, the human morula-blastocyst-specific HERVH long terminal repeats, are activated by the naive pluripotency transcription network. We find that KLF5 interacts with and rewires NANOG to bind and regulate LTR7Ys; in contrast, the primed-specific LTR7s are preferentially bound by NANOG in the absence of KLF5. The specific activation of LTR7Ys by KLF5 and NANOG in pluripotent stem cells contributes to human-specific naive pluripotency regulation. KLF5-LTR7Y axis also promotes the expression of trophectoderm genes and contributes to the expanded cell potential toward extra-embryonic lineage. Our study suggests that HERVs are activated by cell-state-specific transcription machinery and promote stage-specific transcription network and cell potency.

摘要

内源性逆转录病毒 (ERV) 已被报道参与哺乳动物胚胎的着床前发育。在人类早期胚胎发生中,不同的 ERV 亚家族以高度阶段特异性的方式被激活。ERV 激活的特异性如何实现,在很大程度上仍然未知。在这里,我们展示了人类桑葚胚-囊胚特异性 HERVH 长末端重复序列 LTR7Ys 如何被原始多能性转录网络激活的机制。我们发现 KLF5 与 NANOG 相互作用,并重新布线使 NANOG 结合和调节 LTR7Ys;相比之下,在没有 KLF5 的情况下,优先由 NANOG 结合的是启动特异性的 LTR7s。KLF5 和 NANOG 在多能干细胞中对 LTR7Ys 的特异性激活有助于人类特有的原始多能性调控。KLF5-LTR7Y 轴还促进滋养外胚层基因的表达,并有助于向胚胎外谱系扩展细胞潜能。我们的研究表明,HERVs 被细胞状态特异性转录机制激活,并促进特定阶段的转录网络和细胞潜能。

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