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ZC3H4——一种新型的 Cys-Cys-Cys-His 型锌指蛋白——对于小鼠早期胚胎发育至关重要。

ZC3H4-a novel Cys-Cys-Cys-His-type zinc finger protein-is essential for early embryogenesis in mice†.

机构信息

Department of Veterinary and Animal Sciences, University of Massachusetts, Amherst, MA, USA.

Key Laboratory of Animal Biotechnology of the Ministry of Agriculture, College of Veterinary Medicine, Northwest A&F University, Yangling, Shaanxi, PR China.

出版信息

Biol Reprod. 2021 Feb 11;104(2):325-335. doi: 10.1093/biolre/ioaa215.

Abstract

Zinc finger domains of the Cys-Cys-Cys-His (CCCH) class are evolutionarily conserved proteins that bind nucleic acids and are involved in various biological processes. Nearly 60 CCCH-type zinc finger proteins have been identified in humans and mice, most have not been functionally characterized. Here, we provide the first in vivo functional characterization of ZC3H4-a novel CCCH-type zinc finger protein. Our results show that although Zc3h4 mutant embryos exhibit normal morphology at E3.5 blastocyst stage, they cannot be recovered at E7.5 early post-gastrulation stage, suggesting implantation failure. Outgrowth assays reveal that mutant blastocysts either fail to hatch from the zona pellucida, or can hatch but do not form a typical inner cell mass colony, the source of embryonic stem cells (ESCs). Although there is no change in levels of reactive oxygen species, Zc3h4 mutants display severe DNA breaks and reduced cell proliferation. Analysis of lineage specification reveals that both epiblast and primitive endoderm lineages are compromised with severe reductions in cell number and/or specification in the mutant blastocysts. In summary, these findings demonstrate the essential role of ZC3H4 during early mammalian embryogenesis.

摘要

CCCH 类的 Cys-Cys-Cys-His(CCCH)锌指结构域是进化上保守的蛋白质,可结合核酸并参与多种生物过程。在人类和小鼠中已鉴定出近 60 种 CCCH 型锌指蛋白,其中大多数尚未进行功能表征。在这里,我们首次对 ZC3H4-一种新型 CCCH 型锌指蛋白进行了体内功能表征。我们的结果表明,尽管 Zc3h4 突变体胚胎在 E3.5 胚泡阶段表现出正常的形态,但它们不能在 E7.5 早期原肠胚阶段恢复,这表明植入失败。外胚层培养试验表明,突变体胚泡要么无法从透明带孵化,要么可以孵化但不能形成典型的内细胞团集落,这是胚胎干细胞(ESCs)的来源。尽管活性氧水平没有变化,但 Zc3h4 突变体显示出严重的 DNA 断裂和细胞增殖减少。谱系分析表明,在外胚层和原始内胚层谱系中,突变体胚泡中的细胞数量和/或特化均严重减少。总之,这些发现表明 ZC3H4 在早期哺乳动物胚胎发生过程中的重要作用。

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