Equine CRISP3 modulates interaction between spermatozoa and polymorphonuclear neutrophils

A Doty1, W C Buhi, S Benson

  • 1Department of Animal Sciences, College of Agriculture and Life Sciences, College of Veterinary Medicine, University of Florida, Gainesville, Florida, USA.

Insights

Equine seminal plasma contains a protein, CRISP3, that suppresses the binding of sperm to neutrophils. This finding suggests CRISP3 regulates sperm removal from the mare's reproductive tract.

Area of Science:

  • Reproductive immunology
  • Protein biochemistry

Background:

  • Equine spermatozoa trigger a uterine inflammatory response involving neutrophils.
  • Seminal plasma proteins influence sperm-neutrophil interactions.
  • The specific protein responsible for modulating this interaction remained unidentified.

Purpose of the Study:

  • To isolate and identify a protein in equine seminal plasma that inhibits sperm-neutrophil binding.
  • To elucidate the role of this protein in regulating the inflammatory response in the mare's reproductive tract.

Main Methods:

  • Proteins from pooled stallion seminal plasma were precipitated and fractionated using ammonium sulfate precipitation and Sephacryl S200 chromatography.
  • Active fractions were further purified by ion-exchange chromatography (DEAE Sephadex).
  • Protein identification was achieved through SDS-PAGE, Western blotting, and sequence analysis; functional assays used flow cytometry to quantify PMN-sperm binding.

Main Results:

  • A protein suppressing polymorphonuclear neutrophil (PMN)/sperm binding was isolated and identified as equine CRISP3.
  • Equine seminal plasma and purified CRISP3 significantly reduced PMN/sperm binding compared to control media (63.09% ± 8.67% vs. 2.06% ± 2.02%, P < 0.0001).
  • Flow cytometry confirmed the suppressive effect of CRISP3 on PMN-sperm interactions.

Conclusions:

  • Equine seminal plasma contains CRISP3, a protein that effectively suppresses the binding of neutrophils to spermatozoa.
  • CRISP3 likely plays a crucial role in regulating the clearance of spermatozoa from the female reproductive tract, modulating the post-mating inflammatory response.

Related Concept Videos