Identification of bovine sperm acrosomal proteins that interact with a 32-kDa acrosomal matrix protein

Subir K Nagdas1, Linda Smith2, Ilza Medina-Ortiz2

  • 1Department of Chemistry and Physics, Fayetteville State University, 1200 Murchison Road, Fayetteville, NC, 28301, USA. snagdas@uncfsu.edu.

Insights

This study identifies key proteins interacting with OMC32 in bovine sperm, revealing their roles in regulating acrosome reactions and fertilization. These findings advance our understanding of sperm function during mammalian fertilization.

Area of Science:

  • Reproductive Biology
  • Sperm Physiology
  • Molecular Reproduction

Background:

  • Mammalian fertilization involves complex sperm-egg interactions.
  • The outer acrosomal membrane-matrix complex (OMC) is a stable assembly in bovine sperm acrosomes.
  • OMC binds acrosin and N-acetylglucosaminidase, containing major polypeptides and minor OMCrpf polypeptides.

Purpose of the Study:

  • To identify and localize OMC32 binding polypeptides.
  • To elucidate the potential role of the acrosomal protein complex in sperm function.
  • To investigate the regulation of acrosomal protein release during the acrosome reaction.

Main Methods:

  • OMC32 affinity chromatography of detergent-soluble bovine cauda sperm acrosome fractions.
  • Mass spectrometry for identification of bound proteins.
  • Co-immunoprecipitation, immunofluorescence, and immunoblot analysis to confirm interactions and localization.

Main Results:

  • OMC32 affinity chromatography identified acrosin, lactadherin, SPACA3, and IZUMO1.
  • SPACA3 and lactadherin are localized to the apical sperm segment; IZUMO1 to the equatorial segment.
  • SPACA3 is released post-acrosome reaction, while IZUMO1 and lactadherin remain associated; IZUMO1 relocates to the equatorial segment.

Conclusions:

  • OMC32 interacts with acrosomal proteins including acrosin, lactadherin, SPACA3, and IZUMO1.
  • These interactions likely regulate the release of hydrolases and other proteins during the acrosome reaction.
  • Findings provide insights into the molecular mechanisms governing sperm function and fertilization.