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年龄相关的受精诱导钙离子振荡变化取决于小鼠卵母细胞的遗传背景。

Age-related alterations in fertilization-induced Ca2+ oscillations depend on the genetic background of mouse oocytes†.

机构信息

Department of Embryology, Faculty of Biology, University of Warsaw, Warsaw, Poland.

Department of Molecular Biology, Faculty of Biology, University of Warsaw, Warsaw, Poland.

出版信息

Biol Reprod. 2020 Oct 29;103(5):986-999. doi: 10.1093/biolre/ioaa139.

Abstract

Maternal aging affects various aspects of oocytes' physiology, including the functionality of their nuclear apparatus and mitochondria. In the present paper, we wished to investigate whether advanced reproductive age impacts oocytes' ability to generate proper Ca2+ oscillations in response to monospermic fertilization. We examined three different mouse strains/crosses: inbred C57BL/6Tar, outbred Tar:SWISS, and hybrid F1 (C57BL/6Tar × CBA/Tar). The females were either 2-4 months old (young) or 13-16 months old (aged). We observed that the Ca2+ oscillatory pattern is altered in a strain-dependent manner and changes were more profound in aged C57BL/6Tar and F1 than in aged Tar:SWISS oocytes. We also showed that maternal aging differently affects the size of Ca2+ store and expression of Itpr1, Atp2a2, Erp44, and Pdia3 genes involved in Ca2+ homeostasis in oocytes of C57BL/6Tar, Tar:SWISS, and F1 genetic background, which may explain partially the differences in the extent of age-dependent changes in the Ca2+ oscillations in those oocytes. Maternal aging did not have any visible impact on the distribution of the ER cisterns in oocytes of all three genetic types. Finally, we showed that maternal aging alters the timing of the first embryonic interphase onset and that this timing correlates in C57BL/6Tar and Tar:SWISS oocytes with the frequency of fertilization-induced Ca2+ oscillations. Our results indicate that extreme caution is required when conclusions about oocyte/embryo physiological response to aging are made and complement an increasing amount of evidence that mammalian (including human) susceptibility to aging differs greatly depending on the genetic background of the individual.

摘要

母体老化影响卵母细胞生理学的各个方面,包括其核装置和线粒体的功能。在本文中,我们希望研究高龄是否会影响卵母细胞在单精子受精时产生适当的 Ca2+ 振荡的能力。我们检查了三种不同的小鼠品系/杂交:近交 C57BL/6Tar、远交 Tar:SWISS 和杂交 F1(C57BL/6Tar×CBA/Tar)。雌性小鼠的年龄分别为 2-4 个月(年轻)或 13-16 个月(高龄)。我们观察到,Ca2+ 振荡模式以依赖于品系的方式发生改变,并且在高龄 C57BL/6Tar 和 F1 卵母细胞中变化更为明显,而在高龄 Tar:SWISS 卵母细胞中变化不明显。我们还表明,母体老化以不同的方式影响 Ca2+ 库的大小以及涉及 Ca2+ 稳态的 Itpr1、Atp2a2、Erp44 和 Pdia3 基因的表达,这可以部分解释这些卵母细胞中 Ca2+ 振荡的年龄依赖性变化程度的差异。母体老化对所有三种遗传类型的卵母细胞中 ER 池的分布没有任何可见影响。最后,我们表明,母体老化改变了第一次胚胎间期起始的时间,并且在 C57BL/6Tar 和 Tar:SWISS 卵母细胞中,这种时间与受精诱导的 Ca2+ 振荡的频率相关。我们的结果表明,在得出关于卵母细胞/胚胎对衰老的生理反应的结论时需要非常谨慎,并且补充了越来越多的证据,即哺乳动物(包括人类)对衰老的敏感性因个体的遗传背景而异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ee/7609943/c3b8cb53cbfc/ioaa139f1.jpg

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