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尽管在早期小鼠发育过程中具有不同的功能,但 ZNHIT1 和 ZNHIT2 的植入前表型存在重叠。

Overlapping peri-implantation phenotypes of ZNHIT1 and ZNHIT2 despite distinct functions during early mouse development†.

机构信息

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

State Key Laboratory of Pharmaceutical Biotechnology, Department of Cardiology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Medical School of Nanjing University, Nanjing, China.

出版信息

Biol Reprod. 2024 Nov 11;111(5):1017-1029. doi: 10.1093/biolre/ioae128.

Abstract

Mammalian preimplantation development culminates in the formation of a blastocyst that undergoes extensive gene expression regulation to successfully implant into the maternal endometrium. Zinc-finger HIT domain-containing (ZNHIT) 1 and 2 are members of a highly conserved family, yet they have been identified as subunits of distinct complexes. Here, we report that knockout of either Znhit1 or Znhit2 results in embryonic lethality during peri-implantation stages. Znhit1 and Znhit2 mutant embryos have overlapping phenotypes, including reduced proportion of SOX2-positive inner cell mass cells, a lack of Fgf4 expression, and aberrant expression of NANOG and SOX17. Furthermore, we find that the similar phenotypes are caused by distinct mechanisms. Specifically, embryos lacking ZNHIT1 likely fail to incorporate sufficient H2A.Z at the promoter region of Fgf4 and other genes involved in cell projection organization resulting in impaired invasion of trophoblast cells during implantation. In contrast, Znhit2 mutant embryos display a complete lack of nuclear EFTUD2, a key component of U5 spliceosome, indicating a global splicing deficiency. Our findings unveil the indispensable yet distinct roles of ZNHIT1 and ZNHIT2 in early mammalian embryonic development.

摘要

哺乳动物的胚胎着床前发育最终形成囊胚,囊胚经历广泛的基因表达调控,成功着床到母体子宫内膜。锌指 HIT 结构域包含蛋白 1 和 2(ZNHIT1 和 ZNHIT2)是高度保守家族的成员,但它们被鉴定为不同复合物的亚基。在这里,我们报告说,Znhit1 或 Znhit2 的敲除都会导致胚胎在着床前阶段致死。Znhit1 和 Znhit2 突变体胚胎具有重叠的表型,包括 SOX2 阳性内细胞团细胞比例降低、Fgf4 表达缺失以及 NANOG 和 SOX17 的异常表达。此外,我们发现相似的表型是由不同的机制引起的。具体来说,缺乏 ZNHIT1 的胚胎可能无法在 Fgf4 和其他参与细胞突起组织的基因的启动子区域掺入足够的 H2A.Z,导致在植入过程中滋养层细胞的侵袭受损。相比之下,Znhit2 突变体胚胎显示出核 EFTUD2 的完全缺失,EFTUD2 是 U5 剪接体的关键组成部分,表明存在广泛的剪接缺陷。我们的研究结果揭示了 ZNHIT1 和 ZNHIT2 在早期哺乳动物胚胎发育中的不可或缺但又截然不同的作用。

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