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Updated: Mar 15, 2026

Author Spotlight: Advancing Male Infertility Research by Unraveling Sperm Metabolism and Mitochondrial Function
Published on: June 23, 2023
Prohibitin involvement in the generation of mitochondrial superoxide at complex I in human sperm
Ran-Ran Chai1, Guo-Wu Chen2, Hui-Juan Shi3
1Department of Anatomy, Histology & Embryology, Key Laboratory of Medical Imaging Computing and Computer Assisted Intervention of Shanghai, Institute of Reproduction and Development, Shanghai Medical College, Fudan University, Shanghai, China.
Abstract:
Prohibitin (PHB), a major mitochondrial membrane protein, has been shown earlier in our laboratoryto regulate sperm motility via an alteration in mitochondrial membrane potential (MMP) in infertile men with poor sperm quality. To test if PHB expression is associated with sperm mitochondrial superoxide (mROS) levels, here we examined sperm mROS levels, high MMP and lipid peroxidation in infertile men with poor sperm motility (asthenospermia, A) and/or low sperm concentrations (oligoasthenospermia, OA). The diaphorase-type activity of sperm mitochondrial complex I (MCI) and PHB expression were also determined. We demonstrate that mROS and lipid peroxidation levels are significantly higher in sperm from A and OA subjects than in normospermic subjects, whereas high MMP and PHB expression are significantly lower. A positive correlation between mROS and lipid peroxidation and a negative correlation of mROS with PHB expression, high MMP, and sperm motility were found in these subjects. The finding of similar diaphorase-type activity levels of sperm MCI in the three groups studied suggests that the catalytic subunits of MCI in the matrix arm may produce mROS on its own. There may be a dysfunction of electron transport at MCI associated with decreased expression of PHB in sperm with poor quality. We conclude that mROS level is increased and associated with decreased PHB expression, and it may regulate sperm motility via increases in low MMP and lipid peroxidation. This is the first report on the involvement of PHB in human sperm motility loss associated with increased generation of mROS at MCI.
Insights
Decreased prohibitin (PHB) expression in sperm is linked to increased mitochondrial superoxide (mROS) and reduced motility in infertile men. This suggests PHB
Area of Science:
- Reproductive Biology
- Mitochondrial Medicine
- Sperm Physiology
Background:
- Prohibitin (PHB) regulates sperm motility by altering mitochondrial membrane potential (MMP).
- Infertile men with poor sperm quality exhibit altered sperm parameters.
Purpose of the Study:
- To investigate the association between PHB expression and sperm mitochondrial superoxide (mROS) levels.
- To examine mROS, MMP, lipid peroxidation, and PHB expression in asthenospermia and oligoasthenospermia.
Main Methods:
- Analysis of sperm mROS, MMP, and lipid peroxidation.
- Determination of diaphorase-type activity of sperm mitochondrial complex I (MCI) and PHB expression.
Main Results:
- Sperm from infertile men showed higher mROS and lipid peroxidation, but lower MMP and PHB expression compared to normospermic subjects.
- A positive correlation was found between mROS and lipid peroxidation.
- Negative correlations were observed between mROS and PHB expression, high MMP, and sperm motility.
Conclusions:
- Increased mROS and decreased PHB expression are associated with reduced sperm motility in infertile men.
- Mitochondrial dysfunction at MCI, potentially due to decreased PHB, contributes to sperm motility loss.
- This study is the first to report PHB's involvement in human sperm motility loss linked to mROS generation at MCI.
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