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Oocytes maintain ROS-free mitochondrial metabolism by suppressing complex I.

Authors :
Rodríguez-Nuevo A
Torres-Sanchez A
Duran JM
De Guirior C
Martínez-Zamora MA
Böke E
Source :
Nature [Nature] 2022 Jul; Vol. 607 (7920), pp. 756-761. Date of Electronic Publication: 2022 Jul 20.
Publication Year :
2022

Abstract

Oocytes form before birth and remain viable for several decades before fertilization <superscript>1</superscript> . Although poor oocyte quality accounts for most female fertility problems, little is known about how oocytes maintain cellular fitness, or why their quality eventually declines with age <superscript>2</superscript> . Reactive oxygen species (ROS) produced as by-products of mitochondrial activity are associated with lower rates of fertilization and embryo survival <superscript>3-5</superscript> . Yet, how healthy oocytes balance essential mitochondrial activity with the production of ROS is unknown. Here we show that oocytes evade ROS by remodelling the mitochondrial electron transport chain through elimination of complex I. Combining live-cell imaging and proteomics in human and Xenopus oocytes, we find that early oocytes exhibit greatly reduced levels of complex I. This is accompanied by a highly active mitochondrial unfolded protein response, which is indicative of an imbalanced electron transport chain. Biochemical and functional assays confirm that complex I is neither assembled nor active in early oocytes. Thus, we report a physiological cell type without complex I in animals. Our findings also clarify why patients with complex-I-related hereditary mitochondrial diseases do not experience subfertility. Complex I suppression represents an evolutionarily conserved strategy that allows longevity while maintaining biological activity in long-lived oocytes.<br /> (© 2022. The Author(s).)

Details

Language :
English
ISSN :
1476-4687
Volume :
607
Issue :
7920
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
35859172
Full Text :
https://doi.org/10.1038/s41586-022-04979-5