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SMCP Maintains ROS Homeostasis During Sperm Mitochondrial Sheath Assembly

Journal
Reproduction (Cambridge, England) (Q1)
Published
22 July 2026
Study design
Unclassified
Evidence level
Level 5, Expert Opinion (CEBM 5)
Authors
Chang Wang, Xun Xia, Yudie Guo, Xi Zhang, Mengting Xie, Qingsong Xie, et al.
PMID
42484144
DOI
10.1093/reprod/xaag090

Why clinicians should know about it

  • Picked for Embryology (paper of the day, 23 July 2026).

Abstract

Abnormal morphology or function of the sperm mitochondrial sheath is a major cause of asthenozoospermia, yet the mechanisms governing its assembly and functional maturation remain poorly understood. SMCP is a mitochondrial sheath-associated protein, and its regulation at the protein level during late spermiogenesis has attracted substantial interest. Here, we show that SMCP is expressed during mitochondrial sheath assembly in late spermiogenesis. SMCP is initially detected in the cytoplasm of elongating spermatids and, following cytoplasm removal, a fraction is retained in the mitochondrial sheath of mature spermatozoa. SMCP deficiency leads to markedly reduced sperm motility and male infertility without overt alterations in mitochondrial sheath morphology. Integrative proteomic and functional analyses further reveal that SMCP loss impairs mitochondrial respiratory chain function and reduces ATP production. Mechanistically, SMCP associates with GLRX, and SMCP deficiency disrupts GLRX localization, accompanied by elevated ROS levels during mitochondrial sheath assembly and in mature sperm. These redox defects likely contribute to compromised mitochondrial sheath function. Collectively, our findings identify SMCP as a regulator of functional module assembly within the sperm mitochondrial sheath and support the concept that mitochondrial sheath assembly represents not only a morphogenetic process but also a developmental window for functional maturation and redox programming, with the SMCP-GLRX complex serving as a localized antioxidant module during this period.

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.