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ZFP352 通过选择性结合反转录转座子促进全能性网络的适时解体。

Selective binding of retrotransposons by ZFP352 facilitates the timely dissolution of totipotency network.

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.

Key Laboratory of Reproductive Genetics (Ministry of Education) and Department of Reproductive Endocrinology, Women's Hospital, School of Medicine, Zhejiang University, Hangzhou, 310006, China.

出版信息

Nat Commun. 2023 Jun 20;14(1):3646. doi: 10.1038/s41467-023-39344-1.

Abstract

Acquisition of new stem cell fates relies on the dissolution of the prior regulatory network sustaining the existing cell fates. Currently, extensive insights have been revealed for the totipotency regulatory network around the zygotic genome activation (ZGA) period. However, how the dissolution of the totipotency network is triggered to ensure the timely embryonic development following ZGA is largely unknown. In this study, we identify the unexpected role of a highly expressed 2-cell (2C) embryo specific transcription factor, ZFP352, in facilitating the dissolution of the totipotency network. We find that ZFP352 has selective binding towards two different retrotransposon sub-families. ZFP352 coordinates with DUX to bind the 2C specific MT2_Mm sub-family. On the other hand, without DUX, ZFP352 switches affinity to bind extensively onto SINE_B1/Alu sub-family. This leads to the activation of later developmental programs like ubiquitination pathways, to facilitate the dissolution of the 2C state. Correspondingly, depleting ZFP352 in mouse embryos delays the 2C to morula transition process. Thus, through a shift of binding from MT2_Mm to SINE_B1/Alu, ZFP352 can trigger spontaneous dissolution of the totipotency network. Our study highlights the importance of different retrotransposons sub-families in facilitating the timely and programmed cell fates transition during early embryogenesis.

摘要

获得新的干细胞命运依赖于维持现有细胞命运的先前调控网络的解体。目前,在合子基因组激活 (ZGA) 时期的全能性调控网络方面已经揭示了广泛的见解。然而,在 ZGA 之后,为了确保胚胎的及时发育,全能性网络的解体是如何被触发的,在很大程度上仍然未知。在这项研究中,我们发现了高度表达的 2 细胞 (2C) 胚胎特异性转录因子 ZFP352 在促进全能性网络解体方面的意外作用。我们发现 ZFP352 对两种不同的反转录转座子亚家族具有选择性结合。ZFP352 与 DUX 协调,结合 2C 特异性 MT2_Mm 亚家族。另一方面,没有 DUX,ZFP352 会改变亲和力,广泛结合 SINE_B1/Alu 亚家族。这导致随后的发育程序(如泛素化途径)的激活,以促进 2C 状态的解体。相应地,在小鼠胚胎中耗尽 ZFP352 会延迟 2C 到桑葚胚的过渡过程。因此,通过从 MT2_Mm 到 SINE_B1/Alu 的结合转变,ZFP352 可以触发全能性网络的自发解体。我们的研究强调了不同反转录转座子亚家族在早期胚胎发生过程中促进及时和程序化细胞命运转变的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27f0/10281998/9ba8ab01896b/41467_2023_39344_Fig1_HTML.jpg

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