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Updated: Jul 19, 2026

Reconstitution of Actin-Based Motility with Commercially Available Proteins
Published on: October 28, 2022
F-actin involvement in guinea pig sperm motility
Yenia Azamar1, Salvador Uribe, Adela Mújica
1Departamento de Biología Celular, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV), México DF, México.
Abstract:
Sperm motility is a must for natural fertilization to occur. During their travel through the epididymis, mammalian spermatozoa gradually acquire the ability to move. This is accomplished through a sliding movement of the outer doublet microtubules of the axoneme which is energized by the dynein ATPase. Within its complex structure, the mammalian sperm flagellum contains F-actin and thus, we decided to test in the guinea pig sperm flagellum the role of F-actin in motility. During maturation, capacitation, and the acrosome reaction, a gradual decrease of the relative concentration of F-actin was observed. Motility increased as spermatozoa became able to fertilize. Gelsolin, phalloidin, and KI inhibited sperm motility. Gelsolin canceled sperm motility within 20 min of treatment while 0.6 M KI had immediate effects. Phalloidin diminished hyperactive sperm motility slightly. All three compounds significantly increased the relative concentration of F-actin. Latrunculins are conventional drugs that destabilize the F-actin cytoskeleton. Latrunculin A (LAT A) did not affect sperm motility; but significantly increased F-actin relative concentration. The results suggested that in guinea pig spermatozoa, randomly severing F-actin filaments inhibits flagellar motility; while end filament alteration does not. Thus, specific filament regions seem to be important for sperm motility.
Insights
Sperm motility, crucial for fertilization, is linked to F-actin. Severing F-actin filaments inhibits motility, suggesting specific regions are vital for sperm function.
Area of Science:
- Reproductive Biology
- Cellular Biology
- Biochemistry
Background:
- Sperm motility is essential for natural fertilization.
- Mammalian spermatozoa gain motility during epididymal transit.
- Axonemal microtubule sliding, powered by dynein ATPase, drives motility.
Purpose of the Study:
- To investigate the role of F-actin in guinea pig sperm motility.
- To understand how F-actin concentration changes during sperm maturation and capacitation.
Main Methods:
- Treatment of guinea pig spermatozoa with motility-inhibiting compounds (gelsolin, phalloidin, KI) and F-actin destabilizers (Latrunculin A).
- Measurement of F-actin concentration and assessment of sperm motility.
- Observation of changes in F-actin concentration during sperm maturation, capacitation, and acrosome reaction.
Main Results:
- A decrease in F-actin concentration correlated with increased sperm motility and fertilizability.
- Gelsolin, phalloidin, and KI inhibited sperm motility and increased F-actin concentration.
- Latrunculin A did not affect motility but increased F-actin concentration, indicating specific filament regions are critical.
Conclusions:
- F-actin plays a significant role in regulating sperm flagellar motility.
- Random severing of F-actin filaments inhibits motility, while alterations at filament ends do not.
- Specific F-actin filament regions are crucial for maintaining sperm motility and fertilizing capacity.
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