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Updated: Oct 18, 2025

A Cell Free Assay to Study Chromatin Decondensation at the End of Mitosis
Published on: December 19, 2015
Mammalian Cell-Free System Recapitulates the Early Events of Post-Fertilization Sperm Mitophagy
Won-Hee Song1, Dalen Zuidema1, Young-Joo Yi1,2
1Division of Animal Science, University of Missouri, Columbia, MO 65211, USA.
Abstract:
Propagation of paternal sperm-contributed mitochondrial genes, resulting in heteroplasmy, is seldom observed in mammals due to post-fertilization degradation of sperm mitochondria, referred to as sperm mitophagy. Whole organelle sperm mitochondrion degradation is thought to be mediated by the interplay between the ubiquitin-proteasome system (UPS) and the autophagic pathway (Song et al., Proc. Natl. Acad. Sci. USA, 2016). Both porcine and primate post-fertilization sperm mitophagy rely on the ubiquitin-binding autophagy receptor, sequestosome 1 (SQSTM1), and the proteasome-interacting ubiquitinated protein dislocase, valosin-containing protein (VCP). Consequently, we anticipated that sperm mitophagy could be reconstituted in a cell-free system consisting of permeabilized mammalian spermatozoa co-incubated with porcine oocyte extracts. We found that SQSTM1 was detected in the midpiece/mitochondrial sheath of the sperm tail after, but not before, co-incubation with oocyte extracts. VCP was prominent in the sperm mitochondrial sheath both before and after the extract co-incubation and was also detected in the acrosome and postacrosomal sheath and the subacrosomal layer of the spermatozoa co-incubated with extraction buffer as control. Such patterns are consistent with our previous observation of SQSTM1 and VCP associating with sperm mitochondria inside the porcine zygote. In addition, it was observed that sperm head expansion mimicked the early stages of paternal pronucleus development in a zygote during prolonged sperm-oocyte extract co-incubation. Treatment with anti-SQSTM1 antibody during extract co-incubation prevented ooplasmic SQSTM1 binding to sperm mitochondria. Even in an interspecific cellular environment encompassing bull spermatozoa and porcine oocyte extract, ooplasmic SQSTM1 was recruited to heterospecific sperm mitochondria. Complementary with the binding of SQSTM1 and VCP to sperm mitochondria, two sperm-borne pro-mitophagy proteins, parkin co-regulated gene product (PACRG) and spermatogenesis associated 18 (SPATA18), underwent localization changes after extract coincubation, which were consistent with their degradation observed inside fertilized porcine oocytes. These results demonstrate that the early developmental events of post-fertilization sperm mitophagy observed in porcine zygote can be reconstituted in a cell-free system, which could become a useful tool for identifying additional molecules that regulate mitochondrial inheritance in mammals.
Insights
Sperm mitophagy, the degradation of sperm mitochondria after fertilization, was successfully recreated in a cell-free system using oocyte extracts. This breakthrough aids in understanding mammalian mitochondrial inheritance and identifying key regulatory molecules.
Area of Science:
- Reproductive Biology
- Cellular Biology
- Mitochondrial Genetics
Background:
- Paternal mitochondrial DNA transmission is rare in mammals due to sperm mitophagy, a process involving the ubiquitin-proteasome system (UPS) and autophagy.
- Key proteins like sequestosome 1 (SQSTM1) and valosin-containing protein (VCP) are crucial for sperm mitophagy in porcine and primate zygotes.
Purpose of the Study:
- To reconstitute post-fertilization sperm mitophagy in a cell-free system using mammalian spermatozoa and oocyte extracts.
- To investigate the roles of SQSTM1 and VCP in sperm mitophagy and mitochondrial inheritance.
Main Methods:
- Co-incubation of permeabilized mammalian spermatozoa with porcine oocyte extracts.
- Immunodetection of SQSTM1 and VCP localization within spermatozoa.
- Assessment of sperm head expansion and pro-mitophagy protein localization changes.
- Interspecific co-incubation experiments (bull sperm with porcine oocyte extract).
Main Results:
- SQSTM1 localized to sperm mitochondria post-incubation with oocyte extracts, while VCP showed broader localization.
- Sperm head expansion occurred, mimicking pronucleus development.
- Anti-SQSTM1 antibody blocked ooplasmic SQSTM1 binding, and SQSTM1 was recruited to heterospecific sperm mitochondria.
- Pro-mitophagy proteins PACRG and SPATA18 showed altered localization and degradation consistent with in vivo observations.
Conclusions:
- The early events of post-fertilization sperm mitophagy can be replicated in a cell-free system.
- This system provides a valuable tool for identifying novel molecules involved in regulating mammalian mitochondrial inheritance.
Related Concept Videos
Fertilization
Spermatogenesis
Meiosis II

