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6 April 2021 Abnormal early folliculogenesis due to impeded pyruvate metabolism in mouse oocytes
Keiko Tanaka, Yohei Hayashi, Asuka Takehara, Yumi Ito-Matsuoka, Masahito Tachibana, Nobuo Yaegashi, Yasuhisa Matsui
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Abstract

Fetal ovarian germ cells show characteristic energy metabolism status, such as enhanced mitochondrial metabolism as well as glycolysis, but their roles in early folliculogenesis are unclear. We show here that inhibition of pyruvate uptake to mitochondria by UK5099 in organ cultures of fetal mouse ovaries resulted in repressed early folliculogenesis without affecting energy production, survival of oocytes, or meiosis. In addition, the abnormal folliculogenesis by UK5099 was partially rescued by α-ketoglutarate and succinate, intermediate metabolites in the TCA cycle, suggesting the importance of those metabolites. The expression of TGFβ-related genes Gdf9 and Bmp15 in ovarian germ cells, which are crucial for folliculogenesis, was downregulated by UK5099, and the addition of recombinant GDF9 partially rescued the abnormal folliculogenesis induced by UK5099. We also found that early folliculogenesis was similarly repressed, as in the culture, in the ovaries of a germ cell-specific knockout of Mpc2, which encodes a mitochondria pyruvate carrier that is targeted by UK5099. These results suggest that insufficient Gdf9 expression induced by abnormal pyruvate metabolism in oocytes results in early follicular dysgenesis, which is a possible cause of defective folliculogenesis in humans.

Summary sentence

Summary Sentence Pyruvate uptake to mitochondria is crucial for early folliculogenesis via regulation of a TGF-β-related factor in perinatal mouse ovary.

Graphical Abstract

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© The Author(s) 2021. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Keiko Tanaka, Yohei Hayashi, Asuka Takehara, Yumi Ito-Matsuoka, Masahito Tachibana, Nobuo Yaegashi, and Yasuhisa Matsui "Abnormal early folliculogenesis due to impeded pyruvate metabolism in mouse oocytes," Biology of Reproduction 105(1), 64-75, (6 April 2021). https://doi.org/10.1093/biolre/ioab064
Received: 26 December 2020; Accepted: 31 March 2021; Published: 6 April 2021
KEYWORDS
folliculogenesis
GDF9
glycolysis
MPC
oocyte
OXPHOS
pyruvate metabolism
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