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小鼠卵巢卵泡中发育中的卵丘细胞和壁颗粒细胞的转录组多样化。

Transcriptomic diversification of developing cumulus and mural granulosa cells in mouse ovarian follicles.

作者信息

Wigglesworth Karen, Lee Kyung-Bon, Emori Chihiro, Sugiura Koji, Eppig John J

机构信息

The Jackson Laboratory, Bar Harbor, Maine.

Department of Biology Education, College of Education, Chonnam National University, Buk-gu, Gwangju, Korea.

出版信息

Biol Reprod. 2015 Jan;92(1):23. doi: 10.1095/biolreprod.114.121756. Epub 2014 Nov 5.

Abstract

Cumulus cells and mural granulosa cells (MGCs) have functionally distinct roles in antral follicles, and comparison of their transcriptomes at a global and systems level can propel future studies on mechanisms underlying their functional diversity. These cells were isolated from small and large antral follicles before and after stimulation of immature mice with gonadotropins, respectively. Both cell types underwent dramatic transcriptomic changes, and differences between them increased with follicular growth. Although cumulus cells of both stages of follicular development are competent to undergo expansion in vitro, they were otherwise remarkably dissimilar with transcriptomic changes quantitatively equivalent to those of MGCs. Gene ontology analysis revealed that cumulus cells of small follicles were enriched in transcripts generally associated with catalytic components of metabolic processes, while those from large follicles were involved in regulation of metabolism, cell differentiation, and adhesion. Contrast of cumulus cells versus MGCs revealed that cumulus cells were enriched in transcripts associated with metabolism and cell proliferation while MGCs were enriched for transcripts involved in cell signaling and differentiation. In vitro and in vivo models were used to test the hypothesis that higher levels of transcripts in cumulus cells versus MGCs is the result of stimulation by oocyte-derived paracrine factors (ODPFs). Surprisingly ∼48% of transcripts higher in cumulus cells than MGCs were not stimulated by ODPFs. Those stimulated by ODPFs were mainly associated with cell division, mRNA processing, or the catalytic pathways of metabolism, while those not stimulated by ODPFs were associated with regulatory processes such as signaling, transcription, phosphorylation, or the regulation of metabolism.

摘要

卵丘细胞和壁层颗粒细胞(MGCs)在有腔卵泡中具有功能上的不同作用,在全局和系统水平上比较它们的转录组可以推动未来对其功能多样性潜在机制的研究。这些细胞分别从未成熟小鼠经促性腺激素刺激前后的小卵泡和大卵泡中分离出来。两种细胞类型都经历了显著的转录组变化,并且它们之间的差异随着卵泡生长而增加。尽管卵泡发育两个阶段的卵丘细胞在体外都有能力进行扩展,但它们在其他方面却有显著差异,转录组变化在数量上与MGCs相当。基因本体分析表明,小卵泡的卵丘细胞富含通常与代谢过程催化成分相关的转录本,而大卵泡的卵丘细胞则参与代谢调节、细胞分化和黏附。卵丘细胞与MGCs的对比显示,卵丘细胞富含与代谢和细胞增殖相关的转录本,而MGCs则富含参与细胞信号传导和分化的转录本。体外和体内模型被用于检验以下假设:卵丘细胞中转录本水平高于MGCs是由卵母细胞衍生的旁分泌因子(ODPFs)刺激所致。令人惊讶的是,卵丘细胞中比MGCs高的转录本约48%不受ODPFs刺激。那些受ODPFs刺激的转录本主要与细胞分裂、mRNA加工或代谢的催化途径相关,而那些不受ODPFs刺激的转录本则与信号传导、转录、磷酸化或代谢调节等调节过程相关。

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