bioRxiv · 10.1101/2023.10.18.562852
Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan
Abstract
The mechanisms contributing to age-related deterioration of the female reproductive system are complex, however aberrant protein homeostasis is a major contributor. We elucidated exceptionally stable proteins, structures, and macromolecules that persist in mammalian ovaries and gametes across the reproductive lifespan. Ovaries exhibit localized structural and cell-type specific enrichment of stable macromolecules in both the follicular and extrafollicular environments. Moreover, ovaries and oocytes both harbor a panel of exceptionally long-lived proteins, including cytoskeletal, mitochondrial, and oocyte-derived proteins. The exceptional persistence of these long-lived molecules suggest a critical role in lifelong maintenance and age-dependent deterioration of reproductive tissues. One sentence summaryExceptionally long-lived macromolecules in mammalian ovaries and oocytes as pillars for lifelong reproductive health span.
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Bomba-Warczak, E. K., Velez, K. M., Zhou, L. T., Guillermier, C., Edassery, S., Steinhauser, M., Savas, J. N., Elizabeth Duncan, F.. 2023-10-20. Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan. https://doi.org/10.1101/2023.10.18.562852
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