卵母細胞のつくられ方の動画撮影に成功 -未知の細胞膜動態とオルガネラ動態を明らかに-

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2026-04-21 理化学研究所

理化学研究所の研究グループは、マウス胎仔の生殖腺を長期培養し、ライブイメージングによって卵母細胞形成の全過程を動画で捉えることに初めて成功した。観察の結果、将来卵母細胞となる細胞は、シストから分離後に自律的に細胞質を増大させること、さらに形成過程で細胞膜の突出・収縮(ブレビング)が頻繁に起こることが判明した。一方、従来想定されていた細胞間でのオルガネラ移動(ミトコンドリアなど)は確認されず、哺乳類では非哺乳類とは異なる仕組みで卵母細胞が形成される可能性が示された。本成果は卵子の質の理解や生殖補助医療の高度化に貢献すると期待される。

卵母細胞のつくられ方の動画撮影に成功 -未知の細胞膜動態とオルガネラ動態を明らかに-
卵母細胞形成過程のライブイメージングが捉えた未知の生殖細胞動態

<関連情報>

マウス卵母細胞形成における動的なブレブ形成とオルガネラ輸送の欠如 Dynamic blebbing and absence of organelle transfer during mouse oocyte formation

Eishi Aizawa,So Shimamoto,Eriko Kajikawa,Junko Hara,Takaya Abe,Hiroki Shibuya &Tomoya S Kitajima
The EMBO Journal  Published:21 April 2026
DOI:https://doi.org/10.1038/s44318-026-00780-6

Abstract

Oocyte formation in mammals is a tightly regulated process essential for female fertility, yet the underlying mechanisms remain poorly understood. In this study, we establish an ex vivo culture system that faithfully recapitulates in vivo development and enables long-term live imaging of mouse fetal ovaries. Using high resolution imaging, we capture the dynamic behaviors of germ cells during the development from oogonia to nascent oocytes. We identify pronounced blebbing activity during the mitosis-to-meiosis transition. This behavior is regulated by meiotic initiation signals, underscoring its potential developmental relevance, although its precise role remains unclear. A prevailing model suggests that oocyte formation involves organelle transfer from neighboring germ cells during cyst breakdown. However, through photoconversion-based tracking, we observe no detectable transfer of mitochondria or centrosomes, as organelles remain confined to individual cells. These findings point to alternative mechanisms for cytoplasmic enrichment in oocytes. Our study provides new insights into mammalian oocyte formation and establishes a powerful platform for analyzing germ cell dynamics in real time.

細胞遺伝子工学
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