4.3 Article

Mitophagy is involved in the mitochondrial dysfunction of vitrified porcine oocytes

Journal

MOLECULAR REPRODUCTION AND DEVELOPMENT
Volume 88, Issue 6, Pages 427-436

Publisher

WILEY
DOI: 10.1002/mrd.23472

Keywords

chloroquine; mitochondrial function; mitophagy; porcine oocyte; vitrification

Funding

  1. Experimental Animal Project of Shanghai Science and Technology Commission [19140900100]
  2. 'Science and Technology Innovation Action Plan' of Shanghai Science and Technology Commission [18391903700]
  3. Science and Technology Innovation 2025 Major Project [2019B10023]

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Mitochondrial dysfunction was observed in vitrified-warmed oocytes, accompanied by enhanced mitochondria-lysosomes colocalization and altered mitophagy. Inhibition of mitophagy degradation by chloroquine exacerbated mitochondrial dysfunction in vitrified oocytes.
Mitochondrial dysfunction is considered a crucial factor aggravating oocyte viability after vitrification-warming. To clarify the role of mitophagy in mitochondrial extinction of vitrified porcine oocytes, mitochondrial function, ultrastructural characteristics, mitochondria-lysosomes colocalization, and mitophagic proteins were detected with or without chloroquine (CQ) treatment. The results showed that vitrification caused mitochondrial dysfunction, including increasing reactive oxygen species production, decreasing mitochondrial membrane potential, and mitochondrial DNA copy number. Damaged mitochondrial cristae and mitophagosomes were observed in vitrified oocytes. A highly fused fluorescence distribution of mitochondria and lysosomes was also observed. In the detection of mitophagic flux, mitophagy was demonstrated as increasing fluorescence aggregation of microtubule-associated protein light chain 3B (LC3B), enhanced colocalization between LC3B, and voltage-dependent anion channels 1 (VDAC1), and upregulated LC3B-II/I protein expression ratio. CQ inhibited the degradation of mitophagosomes in vitrified oocytes, manifested as decreased mitochondria-lysosomes colocalization, increased fluorescence fraction of VDAC1 overlapping LC3B, increased LC3B-II/I protein expression ratio, and p62 accumulation. The inhibition of mitophagosomes degradation by CQ aggravated mitochondrial dysfunction, including increased oxidative damage, reduced mitochondrial function, and further led to loss of oocyte viability and developmental potentiality. In conclusion, mitophagy is involved in the regulation of mitochondrial function during porcine oocyte vitrification.

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