4.7 Article

Nampt affects mitochondrial function in aged oocytes by mediating the downstream effector FoxO3a

Journal

JOURNAL OF CELLULAR PHYSIOLOGY
Volume 237, Issue 1, Pages 647-659

Publisher

WILEY
DOI: 10.1002/jcp.30532

Keywords

FoxO3a; maternal-aging; mitochondria; Nampt; oocyte

Funding

  1. Natural Science Foundation of Hebei province [H2020206254]
  2. Chinese Universities Scientific Fund [2021TC061]
  3. National Natural Science foundation of China [81901562, 31372307]
  4. Key research and development projects in Hebei province [18226604D]
  5. Medical scientific research of Health commission of Hebei province [20170489]

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Maternal aging can affect the quality and developmental competence of ovulated oocytes by compromising germinal vesicle breakdown, increasing reactive oxygen species and mitochondrial Ca2+ levels, and decreasing mitochondrial temperature. The expression and localization changes of FoxO3a and Nampt play crucial roles in regulating cell survival and mitochondrial function in aged oocytes. Suppression of Nampt may further impair mitochondrial function in aged oocytes, as shown by decreased ATP and mitochondrial membrane potential levels.
Maternal aging can impair the quality and decrease the developmental competence of ovulated oocytes. In this study, compromised germinal vesicle breakdown (GVBD) was found in aged mice oocytes. Furthermore, we observed increased reactive oxygen species (ROS) and mitochondrial Ca2+ levels, along with reduced mitochondrial temperature in aged oocytes. Maternal aging also changed the crotonylation level in oocytes. Forkhead box O3 (FoxO3a), a member of the forkhead protein family involved in the regulation of cell survival and life span reached a peak level in the metaphase II stage. Compared with a younger group, FoxO3a expression increased in aged oocytes. Intracellular localization of FoxO3a changed from the cytoplasm to chromatin in response to aging. The expression of the upstream regulator nicotinamide-phosphoribosyltransferase (Nampt) peaked in the GVBD stage. Moreover, Nampt expression was increased in aged oocytes, and more intense staining of Nampt was found in aged mice ovary. To further study the role of Nampt in mitochondrial function, specific agonist P7C3 and inhibitor FK866 were applied to aged oocytes, and FK866 significantly decreased adenosine triphosphate and mitochondrial membrane potential. In conclusion, mitochondrial dysfunction in aged oocytes was associated with elevated FoxO3a, and suppression of Nampt could further impair mitochondrial function.

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