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卵母细胞衍生的 E-钙黏蛋白作为一种多功能因子,维持小鼠原始卵泡库。

Oocyte-derived E-cadherin acts as a multiple functional factor maintaining the primordial follicle pool in mice.

机构信息

Key Laboratory of Ministry of Education for Conservation and Utilization of Special Biological Resources in the Western China, College of Life Science, NingXia University, Yinchuan, Ningxia, 750021, China.

State Key Laboratory of Agrobiotechnology, College of Biological Science, China Agricultural University, Beijing, 100193, China.

出版信息

Cell Death Dis. 2019 Feb 15;10(3):160. doi: 10.1038/s41419-018-1208-3.

Abstract

In mammals, female fecundity is determined by the size of the primordial follicle (PF) pool, which is established during the perinatal period. As a non-renewable resource, the preservation of dormant PFs is crucial for sustaining female reproduction throughout life. Although studies have revealed that several oocyte-derived functional genes and pathways, such as newborn ovary homeobox (NOBOX) and 3-phosphoinositide-dependent protein kinase-1, participate in maintaining the PF pool, our understanding of the underlying molecular mechanisms is still incomplete. Here, we demonstrate that E-cadherin (E-cad) plays a crucial role in the maintenance of PFs in mice. E-cad is specifically localized to the cytomembrane of oocytes in PFs. Knockdown of E-cad in neonatal ovaries resulted in significant PF loss owing to oocyte apoptosis. In addition, the expression pattern of NOBOX is similar to that of E-cad. Knockdown of E-cad resulted in a decreased NOBOX level, whereas overexpression of Nobox partially rescued the follicle loss induced by silencing E-cad. Furthermore, E-cad governed NOBOX expression by regulating the shuttle protein, β-catenin, which acts as a transcriptional co-activator. Notably, E-cad, which is a transmembrane protein expressed in the oocytes, was also responsible for maintaining the PF structure by facilitating cell-cell adhesive contacts with surrounding pregranulosa cells. In conclusion, E-cad in oocytes of PFs plays an indispensable role in the maintenance of the PF pool by facilitating follicular structural stability and regulating NOBOX expression. These findings shed light on the physiology of sustaining female reproduction.

摘要

在哺乳动物中,女性的生育能力由原始卵泡 (PF) 池的大小决定,而 PF 池是在围产期建立的。作为一种不可再生资源,休眠 PF 的保存对于维持女性一生的生殖功能至关重要。虽然研究已经揭示了几个卵母细胞衍生的功能基因和途径,如新生卵巢同源盒 (NOBOX) 和 3-磷酸肌醇依赖性蛋白激酶-1,参与维持 PF 池,但我们对其潜在的分子机制的理解仍不完整。在这里,我们证明 E-钙黏蛋白 (E-cad) 在维持小鼠 PF 中起着关键作用。E-cad 特异性定位于 PF 中卵母细胞的细胞质膜上。在新生卵巢中敲低 E-cad 会导致卵母细胞凋亡,从而导致 PF 大量丢失。此外,NOBOX 的表达模式与 E-cad 相似。敲低 E-cad 会导致 NOBOX 水平降低,而过表达 Nobox 则部分挽救了沉默 E-cad 诱导的卵泡丢失。此外,E-cad 通过调节穿梭蛋白β-连环蛋白来控制 NOBOX 的表达,β-连环蛋白作为转录共激活因子起作用。值得注意的是,E-cad 是一种在卵母细胞中表达的跨膜蛋白,它还通过与周围的颗粒细胞建立细胞间的黏附接触来维持 PF 的结构,从而有助于维持 PF 池。总之,PF 中卵母细胞的 E-cad 通过促进卵泡结构稳定性和调节 NOBOX 表达,在维持 PF 池方面发挥着不可或缺的作用。这些发现揭示了维持女性生殖的生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c858/6377673/d5d22606f5c3/41419_2018_1208_Fig1_HTML.jpg

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