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May 6, 2026Cells0 citationsOpen Access

MUC1 Protects Preimplantation Embryos In Vitro via Clearance of ROS by Triggering Mitophagy

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JYJie YangDLDanjun LiCYChihyu Yang

Key Points

  • This research aims to understand how MUC1 regulates mitophagy and mitigates oxidative stress during early embryonic development.
  • Analyzed MUC1 distribution in mouse and human oocytes and its expression during blastocyst stage.
  • Conducted Muc1 knockout experiments to observe the impact on blastocyst formation and mtROS accumulation.
  • Used low-dose CCCP treatment and vitamin C supplementation to assess the restoration of mitophagy and developmental competence.
  • Muc1 knockout resulted in impaired blastocyst formation and elevated mtROS levels.
  • Stimulation of mitophagy with CCCP rescued blastocyst formation defects in Muc1-null embryos.
  • Vitamin C supplementation effectively reduced mtROS and restored developmental capabilities.

Abstract

Embryos being treated using assisted reproductive technology (ART) are unavoidably exposed to physical stressors, thus producing reactive oxygen species (ROS) which trigger mitophagy to support embryonic development. However, the mechanisms underlying the regulation of mitophagy in early embryonic development remain largely unexplored. Here, we found that Mucin 1 (MUC1) exhibited a uniform distribution in both mouse and human oocytes, and its expression peaked at the blastocyst stage. Further analysis revealed that Muc1 knockout impairs blastocyst formation in vitro. Correspondingly, Muc1 knockout led to the accumulation of mitochondrial reactive oxygen species (mtROS) and a reduction in phosphatase and tensin homolog (PTEN)-induced putative kinase 1 (PINK1)/Parkinson protein 2 (PARK2/Parkin)-dependent mitophagy. Stimulation of mitophagy via low-dose carbonyl cyanide 3-chlorophenylhydrazone (CCCP) treatment rescued the blastocyst formation defect in Muc1-null embryos. Vitamin C supplementation effectively scavenged mtROS and restored developmental competence. Together, our findings establish that MUC1 safeguards early embryonic development by promoting mitophagy to decrease mtROS levels in vitro. Moreover, vitamin C could compensate for Muc1 deficiency by eliminating mtROS. This study not only identified a new function of MUC1 in protecting early embryonic development in vitro, but also revealed a novel mechanism of mitophagy regulation in early embryos, which has potential applications for ART.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69fadaab03f892aec9b1e60dhttps://doi.org/10.3390/cells15090806
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