Related Experiment Video
Updated: Aug 11, 2026

Step-specific Sorting of Mouse Spermatids by Flow Cytometry
Published on: December 31, 2015
Role of the sperm proteasome during fertilization and gamete interaction in the mouse
Consuelo Pasten1, Patricio Morales, Milene Kong
1Department of Biomedicine, Faculty of Health Sciences, University of Antofagasta, Antofagasta, Chile.
Abstract:
In this work, we have investigated the role of the sperm proteasome during in vitro fertilization (IVF) and gamete interaction in the mouse. Proteasome activity was measured in extract and intact sperm using a specific substrate. In addition, sperm were treated with specific proteasome inhibitors and evaluated during IVF, binding to the zona pellucida, and progesterone- and zona pellucida-induced acrosome reactions. In other experiments, sperm membrane proteins were obtained resuspending them in Triton X-114, shaking vigorously and let standing by 4 hr. Soluble sperm proteins were partitioned in the aqueous phase and sperm membrane proteins in the detergent phase. In both phases, proteasome activity was measured. Labeling of cell surface sperm proteins was carried out with the cell-impermeable NHS-LC biotin, extracted with Triton X-114, and mixing with avidin-agarose beads. Nonpermeabilized sperm were incubated with an anti-proteasome monoclonal antibody and evaluated by indirect immunofluorescence. The results indicate that sperm extracts as well as intact sperm had proteasome activity; the sperm proteasome was involved in IVF, specifically during sperm-zona pellucida binding and the acrosome reaction; soluble sperm membrane proteins exhibited proteasome activity; biotin experiments indicated the presence of proteasomes on the sperm surface, which was corroborated by indirect immunofluorescence experiments. All these observations indicate that the mouse sperm proteasome participates in the binding to the zona pellucida and the acrosome reaction and that there is a pool of proteasomes located on the sperm head.
Insights
The sperm proteasome plays a crucial role in mouse in vitro fertilization (IVF), particularly in sperm-zona pellucida binding and acrosome reactions. This research confirms proteasomes are present on the sperm surface, aiding fertilization processes.
Area of Science:
- Reproductive Biology
- Cellular Biology
- Biochemistry
Background:
- The proteasome is a vital cellular machine responsible for protein degradation.
- Its role in sperm function, especially during fertilization, is not fully understood.
- Investigating sperm proteasome function is key to understanding male fertility.
Purpose of the Study:
- To investigate the role of the sperm proteasome in mouse in vitro fertilization (IVF).
- To determine the location and activity of proteasomes within sperm cells.
- To elucidate the involvement of sperm proteasomes in gamete interaction and acrosome reactions.
Main Methods:
- Assessed proteasome activity in sperm extracts and intact sperm using specific substrates.
- Utilized proteasome inhibitors to evaluate effects on IVF, sperm-zona pellucida binding, and acrosome reactions.
- Fractionated sperm proteins to localize proteasome activity in soluble and membrane fractions.
- Employed biotinylation and immunofluorescence to identify surface-located proteasomes.
Main Results:
- Sperm extracts and intact sperm exhibited measurable proteasome activity.
- Proteasome inhibition impaired IVF, sperm-zona pellucida binding, and acrosome reactions.
- Proteasome activity was detected in soluble sperm membrane proteins.
- Evidence confirmed the presence of proteasomes on the sperm surface, particularly the head.
Conclusions:
- The mouse sperm proteasome is integral to successful in vitro fertilization.
- Sperm proteasomes are involved in key fertilization events: zona pellucida binding and acrosome reaction.
- A significant pool of proteasomes is located on the sperm head, mediating crucial functions.
More Related Videos
Related Concept Videos
Spermatogenesis
Fertilization
Spermatogenesis
The process of spermatogenesis can be divided into mitosis, meiosis, and spermiogenesis. During mitosis, the spermatogonia or stem cells divide to produce two identical daughter cells, type A and B spermatogonia. Type-A...

