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正常胚胎发育需要MEIG1介导的精子形成。

Normal embryo development needs MEIG1-mediated sperm formation.

作者信息

Sheng Yi, Yap Yi Tian, Li Wei, Dhikhirullahi Opeyemi, Niu Changmin, Rabbani Mashiat, Krawetz Stephen A, Hammoud Saher Sue, Orwig Kyle E, Zhang Zhibing

机构信息

Department of Obstetrics, Gynecology and Reproductive Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Department of Physiology, School of Medicine, Wayne State University, Detroit, Michigan, USA.

出版信息

FASEB J. 2025 Mar 15;39(5):e70426. doi: 10.1096/fj.202500109R.

Abstract

Normal embryo development is a complex process that requires normal sperm to fertilize normal oocytes. Abnormal embryogenesis can be caused by either abnormal oocytes or abnormal sperm. However, the impact of sperm-associated factors is often underappreciated. Association between defects in sperm chromatin and poor embryo development has been consistently reported. In sperm cells, most histones are replaced by protamines to remodel sperm cell chromatin. However, the mechanism of nuclear protein replacement is largely unknown. Meiosis expressed gene 1 (MEIG1) plays a unique role in male fertility. The protein is recruited to the manchette at a late stage of spermatogenesis. The manchette is a unique structure only present in male germ cells, and one of the proposed functions is replacing histones with protamines. In this study, ICSI was conducted using sperm heads from the Meig1 KO mice. Significantly reduced fertilization was observed, and few embryos developed to blastocysts, which were associated with severe sperm DNA damage. Thus, we discovered an unexpected role for MEIG1 extending beyond spermatogenesis to include a role in embryogenesis, likely through remodeling sperm chromatin.

摘要

正常胚胎发育是一个复杂的过程,需要正常的精子使正常的卵母细胞受精。异常胚胎发生可能由异常的卵母细胞或异常的精子引起。然而,精子相关因素的影响往往未得到充分重视。精子染色质缺陷与胚胎发育不良之间的关联一直有报道。在精子细胞中,大多数组蛋白被鱼精蛋白取代以重塑精子细胞染色质。然而,核蛋白替换的机制在很大程度上尚不清楚。减数分裂表达基因1(MEIG1)在男性生育中发挥独特作用。该蛋白在精子发生后期被招募到精子环。精子环是仅存在于雄性生殖细胞中的独特结构,其提出的功能之一是用鱼精蛋白取代组蛋白。在本研究中,使用来自Meig1基因敲除小鼠的精子头部进行了胞浆内单精子注射。观察到受精显著减少,很少有胚胎发育到囊胚期,这与严重的精子DNA损伤有关。因此,我们发现了MEIG1一个意想不到的作用,它不仅超出了精子发生的范畴,还可能通过重塑精子染色质在胚胎发生中发挥作用。

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本文引用的文献

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