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ID 69894
フルテキストURL
著者
Gekko, Haruna Department of Animal Science, Graduate School of Environment and Life Science, Okayama University
Nomura, Ruri Department of Animal Science, Graduate School of Environment and Life Science, Okayama University
Kuzuhara, Daiki Reproductive Centre, Mio Fertility Clinic
Kaneyasu, Masato Department of Animal Science, Graduate School of Environment and Life Science, Okayama University
Koseki, Genpei Department of Animal Science, Graduate School of Environment and Life Science, Okayama University
Adhikari, Deepak Development and Stem Cell Program and Department of Anatomy and Developmental Biology, Monash Biomedicine Discovery Institute, Monash University
Mio, Yasuyuki Reproductive Centre, Mio Fertility Clinic
Carroll, John Development and Stem Cell Program and Department of Anatomy and Developmental Biology, Monash Biomedicine Discovery Institute, Monash University
Kono, Tomohiro Department of Bioscience, Tokyo University of Agriculture
Funahashi, Hiroaki Department of Animal Science, Graduate School of Environment and Life Science, Okayama University ORCID Kaken ID publons researchmap
Wakai, Takuya Department of Animal Science, Graduate School of Environment and Life Science, Okayama University
抄録
In cleavage-stage embryos, preexisting organelles partition evenly into daughter blastomeres without significant cell growth after symmetric cell division. The presence of mitochondrial DNA within mitochondria and its restricted replication during preimplantation development makes their inheritance particularly important. While chromosomes are precisely segregated by the mitotic spindle, the mechanisms controlling mitochondrial partitioning remain poorly understood. In this study, we investigate the mechanism by which Dynamin-related protein 1 (Drp1) controls the mitochondrial redistribution and partitioning during embryonic cleavage. Depletion of Drp1 in mouse zygotes causes marked mitochondrial aggregation, and the majority of embryos arrest at the 2 cell stage. Clumped mitochondria are located in the center of mitotic Drp1-depleted zygotes with less uniform distribution, thereby preventing their symmetric partitioning. Asymmetric mitochondrial inheritance is accompanied by functionally inequivalent blastomeres with biased ATP and endoplasmic reticulum Ca2+ levels. We also find that marked mitochondrial centration in Drp1-depleted zygotes prevents the assembly of parental chromosomes, resulting in chromosome segregation defects and binucleation. Thus, mitochondrial fragmentation mediated by Drp1 ensures proper organelle positioning and partitioning into functional daughters during the first embryonic cleavage.
発行日
2025-08-11
出版物タイトル
eLife
13巻
出版者
eLife Sciences Publications, Ltd
開始ページ
RP99936
ISSN
2050-084X
資料タイプ
学術雑誌論文
言語
英語
OAI-PMH Set
岡山大学
著作権者
© 2024, Gekko, Nomura et al.
論文のバージョン
publisher
PubMed ID
DOI
Web of Science KeyUT
関連URL
isVersionOf https://doi.org/10.7554/elife.99936
ライセンス
http://creativecommons.org/licenses/by/4.0/
Citation
Haruna Gekko, Ruri Nomura, Daiki Kuzuhara, Masato Kaneyasu, Genpei Koseki, Deepak Adhikari, Yasuyuki Mio, John Carroll, Tomohiro Kono, Hiroaki Funahashi, Takuya Wakai (2025) Redistribution of fragmented mitochondria ensures symmetric organelle partitioning and faithful chromosome segregation in mitotic mouse zygotes eLife 13:RP99936 https://doi.org/10.7554/eLife.99936.4
助成情報
17K17905: 卵母細胞の減数分裂過程におけるオルガネラの動態解析 ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
1165627: ( National Health and Medical Research Council )
20K06627: 卵母細胞における小胞体-ミトコンドリア接触領域の生理機能解析 ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
23K0886905: ( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )