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Updated: Jul 16, 2026

Real-Time Imaging of Acrosomal Calcium Dynamics and Exocytosis in Live Mouse Sperm
Published on: October 13, 2023
GM1 dynamics as a marker for membrane changes associated with the process of capacitation in murine and bovine
Vimal Selvaraj1, Danielle E Buttke, Atsushi Asano
1Baker Institute for Animal Health, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.
Abstract:
We previously showed that in live murine and bovine sperm heads, the ganglioside G(M1) localizes to the sterol-rich plasma membrane overlying the acrosome (APM). Labeling G(M1) using the pentameric cholera toxin subunit B (CTB) induced a dramatic redistribution of signal from the APM to the sterol-poor postacrosomal plasma membrane (PAPM) upon sperm death. We now show a similar phenomenon in the flagellum where CTB induces G(M1) redistribution to sterol-poor membrane subdomains of the annulus and flagellar zipper. Because sterol efflux from the plasma membrane is required for capacitation, we examined whether G(M1) localization might be useful to detect membrane changes associated with capacitation and/or acrosomal exocytosis. First, incubation of murine and bovine sperm with their respective stimuli for capacitation did not change G(M1) distribution in live cells. However, incubation of sperm of both species with specific stimuli for capacitation, followed by the use of specific fixation conditions, induced reproducible, stimulus-specific patterns of G(M1) distribution. By assessing changes in G(M1) distribution in response to progesterone-induced AE, we show that these patterns reflect the response of murine sperm populations to capacitating stimuli. These data suggest that G(M1) localization can be used as a diagnostic tool for evaluating sperm response to stimuli for capacitation and/or AE. Such information could be useful when deciding between technologies of assisted reproduction or when screening for male fertility. Furthermore, stimulus-specific changes in G(M1) distribution showed that sperm could respond to NaHCO(3) or mediators of sterol efflux independently, thereby refining existing models of capacitation.
Insights
Ganglioside G(M1) localization in sperm membranes changes with cell death and can indicate sperm capacitation and acrosomal exocytosis. This finding offers a new diagnostic tool for male fertility and assisted reproduction.
Area of Science:
- Sperm biology
- Membrane biophysics
- Reproductive medicine
Background:
- Ganglioside G(M1) is found in the sterol-rich plasma membrane overlying the acrosome (APM) in live sperm.
- Cholera toxin subunit B (CTB) binding to G(M1) causes its redistribution to sterol-poor regions upon sperm death.
Purpose of the Study:
- To investigate if G(M1) localization can detect membrane changes during sperm capacitation and acrosomal exocytosis.
- To refine models of sperm capacitation by examining stimulus-specific G(M1) redistribution.
Main Methods:
- Live and fixed murine and bovine sperm were labeled with CTB to track G(M1) distribution.
- Sperm were exposed to capacitation stimuli (e.g., NaHCO(3), progesterone) and specific fixation techniques were employed.
- Changes in G(M1) patterns were assessed in response to stimuli and during progesterone-induced acrosomal exocytosis (AE).
Main Results:
- G(M1) redistribution to sterol-poor areas (PAPM, flagellum) occurs upon sperm death.
- Capacitation stimuli did not alter G(M1) distribution in live sperm but induced reproducible, stimulus-specific patterns in fixed cells.
- G(M1) distribution patterns correlated with sperm population responses to capacitating stimuli and progesterone-induced AE.
Conclusions:
- G(M1) localization serves as a diagnostic marker for sperm capacitation and acrosomal exocytosis.
- This method can aid in selecting assisted reproduction technologies and screening male fertility.
- Distinct G(M1) changes reveal independent sperm responses to NaHCO(3) and sterol efflux mediators, advancing capacitation models.
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