Oocytes and hypoxanthine orchestrate the G2-M switch mechanism in ovarian granulosa cells

Author:

Li Chengyu1,Meng Xueqin1,Liu Shuo1,Li Weijian1,Zhang Xue1,Zhou Jilong2,Yao Wang1,Dong Chao1,Liu Zhaojun1,Zhou Jiaqi1,Li Juan1,Tao Jingli1,Wu Wangjun1,Shen Ming1ORCID,Liu Honglin1

Affiliation:

1. College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, China

2. Institute of Stem Cell and Regenerative Biology, College of Animal Science and Veterinary Medicine, Huazhong Agricultural University, Wuhan 430070, China

Abstract

ABSTRACT In mammalian growing follicles, oocytes are arrested at the diplotene stage (which resembles the G2/M boundary in mitosis), while the granulosa cells (GCs) continue to proliferate during follicular development, reflecting a cell cycle asynchrony between oocytes and GCs. Hypoxanthine (Hx), a purine present in the follicular fluid, has been shown to induce oocytes meiotic arrest, although its role in GC proliferation remains ill-defined. Here, we demonstrate that Hx indiscriminately prevents G2-to-M phase transition in porcine GCs. However, oocyte-derived paracrine factors (ODPFs), particularly GDF9 and BMP15, maintain the proliferation of GCs, partly by activating the ERK1/2 signaling and enabling the G2/M transition that is suppressed by Hx. Interestingly, GCs with lower expression of GDF9/BMP15 receptors appear to be more sensitive to Hx-induced G2/M arrest and become easily detached from the follicular wall. Importantly, Hx-mediated inhibition of G2/M progression instigates GC apoptosis, which is ameliorated in the presence of GDF9 and/or BMP15. Therefore, our data indicate that the counterbalance of intrafollicular factors, particularly Hx and oocyte-derived GDF9/BMP15, fine-tunes the development of porcine follicles by regulating the cell cycle progression of GCs.

Funder

National Natural Science Foundation of China

Jiangsu Higher Education Institutions

Central Universities

Natural Science Foundation of Jiangsu Province

National Major Project for Breeding of Transgenic Pigs

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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