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卵母细胞激活是一个迄今为止局限于细胞质的事件:那么细胞核呢?

Oocyte activation is a cytoplasm-confined event so far: what about the nucleus?

机构信息

Department of Bioscience and Technology for Food, Agriculture and Environment, University of Teramo, Teramo, Italy.

Department of Veterinary Medicine, University of Teramo, Teramo, Italy.

出版信息

Reproduction. 2024 Feb 2;167(3). doi: 10.1530/REP-23-0360. Print 2024 Mar 1.

Abstract

The fertilizing spermatozoa induce a Ca2+ oscillatory pattern, the universal hallmark of oocyte activation, in all sexually reproducing animals. Assisted reproductive technologies (ARTs) like intracytoplasmic sperm injection (ICSI) bypass the physiological pathway; however, while a normal Ca2+ release pattern occurs in some species, particularly humans, artificial activation is compulsory for ICSI-fertilized oocytes to develop in most farm animals. Unlike the normal oscillatory pattern, most artificial activation protocols induce a single Ca2+ spike, undermining proper ICSI-derived embryo development in these species. Curiously, diploid parthenogenetic embryos activated by the same treatments develop normally at high frequencies and implant upon transfer in the uterus. We hypothesized that, at least in ruminant embryos, the oscillatory calcium waves late in the first cell cycle target preferentially the paternal pronucleus and are fundamentally important for paternal nuclear remodeling. We believe that Ca2+ signaling is central to full totipotency deployment of the paternal genome. Research in this area could highlight the asymmetry between the parental genome reprogramming timing/mechanisms in early development and impact ARTs like ICSI and cloning.

摘要

受精精子在所有有性繁殖的动物中诱导 Ca2+ 振荡模式,这是卵母细胞激活的普遍标志。辅助生殖技术(ARTs)如胞浆内单精子注射(ICSI)绕过生理途径;然而,虽然在某些物种(特别是人类)中会发生正常的 Ca2+ 释放模式,但对于大多数家畜来说,ICSI 受精的卵母细胞的发育仍然需要人工激活。与正常的振荡模式不同,大多数人工激活方案会诱导单个 Ca2+ 峰,从而破坏这些物种中 ICSI 衍生胚胎的正常发育。奇怪的是,用相同处理方法激活的二倍体孤雌胚胎以高频率正常发育,并在子宫内移植后着床。我们假设,至少在反刍动物胚胎中,第一细胞周期后期的振荡钙波优先靶向父本原核,并对父本核重塑具有重要意义。我们认为 Ca2+ 信号对于充分发挥父本基因组的全能性至关重要。该领域的研究可以突出早期发育中双亲基因组重编程时间/机制之间的不对称性,并对 ICSI 和克隆等 ART 产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e1/10895280/2dd5714f2ce7/REP-23-0360fig1.jpg

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