Dynamic resolution of acrosomal exocytosis in human sperm

Author:

Harper Claire V.1,Cummerson Joanne A.2,White Michael R. H.1,Publicover Stephen J.3,Johnson Peter M.2

Affiliation:

1. Centre for Cell Imaging, School of Biological Sciences, Biosciences Building, Crown Street, University of Liverpool, L69 7ZB, UK

2. Division of Immunology, School of Infection and Host Defence, Duncan Building, Daulby Street, University of Liverpool, L69 3GA, UK

3. School of Biosciences, University of Birmingham, Birmingham, B15 2TT, UK

Abstract

An essential step in mammalian fertilisation is the sperm acrosome reaction (AR) – exocytosis of a single large vesicle (the acrosome) that surrounds the nucleus at the apical sperm head. The acrosomal and plasma membranes fuse, resulting in both the release of factors that might facilitate penetration of the zona pellucida (which invests the egg) and the externalisation of membrane components required for gamete fusion. Exocytosis in somatic cells is a rapid process – typically complete within milliseconds – yet acrosomal enzymes are required throughout zona penetration – a period of minutes. Here, we present the first studies of this crucial and complex event occurring in real-time in individual live sperm using time-lapse fluorescence microscopy. Simultaneous imaging of separate probes for acrosomal content and inner acrosomal membrane show that rapid membrane fusion, initiated at the cell apex, is followed by exceptionally slow dispersal of acrosomal content (up to 12 minutes). Cells that lose their acrosome prematurely (spontaneous AR), compromising their ability to penetrate the egg vestments, are those that are already subject to a loss of motility and viability. Cells undergoing stimulus-induced AR (progesterone or A23187) remain viable, with a proportion remaining motile (progesterone). These findings suggest that the AR is a highly adapted form of exocytosis.

Publisher

The Company of Biologists

Subject

Cell Biology

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1. Real-Time Imaging of Acrosomal Calcium Dynamics and Exocytosis in Live Mouse Sperm;Journal of Visualized Experiments;2023-10-13

2. α-Synuclein is required for sperm exocytosis at a post-fusion stage;Frontiers in Cell and Developmental Biology;2023-05-23

3. The role of spermatozoa-zona pellucida interaction in selecting fertilization-competent spermatozoa in humans;Frontiers in Endocrinology;2023-03-20

4. A selective inhibitor of the sperm-specific potassium channel SLO3 impairs human sperm function;Proceedings of the National Academy of Sciences;2023-01-17

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