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Mitochondrial Ca2 + Is Related to Mitochondrial Activity and Dynamic Events in Mouse Oocytes.


ABSTRACT: Mitochondrial energy insufficiency is strongly associated with oocyte activation disorders. Ca2+, especially that in the mitochondrial matrix, plays a pivotal role in mitochondrial energy supplementation, but the underlying mechanisms are still only poorly understood. An encoded mitochondrial matrix Ca2+ probe (Mt-GCaMP6s) was introduced to observe mitochondrial Ca2+ ([Ca2+]m) dynamic changes during oocyte maturation and activation. We found that active mitochondria surrounding the nucleus showed a higher [Ca2+]m than those distributed in the cortex during oocyte maturation. During oocyte partheno-activation, the patterns of Ca2+ dynamic changes were synchronous in the cytoplasm and mitochondria. Such higher concentration of mitochondrial matrix Ca2+ was closely related to the distribution of mitochondrial calcium uptake (MICU) protein. We further showed that higher [Ca2+]m mitochondria around the chromosomes in oocytes might have a potential role in stimulating mitochondrial energy for calmodulin-responsive oocyte spindle formation, while synchronizing Ca2+ functions in the cytoplasm and nuclear area are important for oocyte activation.

SUBMITTER: Wang F 

PROVIDER: S-EPMC7652752 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Mitochondrial Ca<sup>2 +</sup> Is Related to Mitochondrial Activity and Dynamic Events in Mouse Oocytes.

Wang Feng F   Meng Tie-Gang TG   Li Jian J   Hou Yi Y   Luo Shi-Ming SM   Schatten Heide H   Sun Qing-Yuan QY   Ou Xiang-Hong XH  

Frontiers in cell and developmental biology 20201027


Mitochondrial energy insufficiency is strongly associated with oocyte activation disorders. Ca<sup>2+</sup>, especially that in the mitochondrial matrix, plays a pivotal role in mitochondrial energy supplementation, but the underlying mechanisms are still only poorly understood. An encoded mitochondrial matrix Ca<sup>2+</sup> probe (Mt-GCaMP6s) was introduced to observe mitochondrial Ca<sup>2+</sup> ([Ca<sup>2+</sup>]<sub>m</sub>) dynamic changes during oocyte maturation and activation. We found  ...[more]

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