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8 December 2022 Quantitative proteomic analysis uncovers protein-expression profiles during gonadotropin-dependent folliculogenesis in mice
Shuo Zhang, Lu Mu, Haoran Wang, Xueqiang Xu, Longzhong Jia, Shudong Niu, Yibo Wang, Peike Wang, Lingyu Li, Junyi Chai, Zhen Li, Yan Zhang, Hua Zhang
Author Affiliations +
Abstract

Ovarian follicle is the basic functional unit of female reproduction, and is composed of oocyte and surrounding granulosa cells. In mammals, folliculogenesis strictly rely on gonadotropin regulations to determine the ovulation and the quality of eggs. However, the dynamic changes of protein-expressing profiles in follicles at different developmental stages remain largely unknown. By performing mass-spectrometry-based quantitative proteomic analysis of mouse follicles, we provide a proteomic database (∼3000 proteins) that covers three key stages of gonadotropin-dependent folliculogenesis. By combining bioinformatics analysis with in situ expression validation, we showed that our proteomic data well reflected physiological changes during folliculogenesis, which provided potential to predict unknown regulators of folliculogenesis. Additionally, by using the oocyte structural protein zona pellucida protein 2 as the internal control, we showed the possibility of our database to predict the expression dynamics of oocyte-expressing proteins during folliculogenesis. Taken together, we provide a high-coverage proteomic database to study protein-expression dynamics during gonadotropin-dependent folliculogenesis in mammals.

Summary Sentence

Mass-spectrometry-based quantitative proteomic analysis provides a database of the protein-expression profiles during gonadotropin-dependent folliculogenesis in mice.

Graphical Abstract

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Shuo Zhang, Lu Mu, Haoran Wang, Xueqiang Xu, Longzhong Jia, Shudong Niu, Yibo Wang, Peike Wang, Lingyu Li, Junyi Chai, Zhen Li, Yan Zhang, and Hua Zhang "Quantitative proteomic analysis uncovers protein-expression profiles during gonadotropin-dependent folliculogenesis in mice," Biology of Reproduction 108(3), 479-491, (8 December 2022). https://doi.org/10.1093/biolre/ioac217
Received: 8 March 2022; Accepted: 2 December 2022; Published: 8 December 2022
KEYWORDS
female reproduction
folliculogenesis
ovarian follicle
proteome
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