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PMID: 25966627 Published · ppublish English Journal Article Review

Regulation of Sperm Capacitation and the Acrosome Reaction by PIP 2 and Actin Modulation.

Asian journal of andrology ·Vol. 17 ·No. 4 ·2015-00-00 ·Pages 597-600

Breitbart H, Finkelstein M

Abstract

Actin polymerization and development of hyperactivated (HA) motility are two processes that take place during sperm capacitation. Actin polymerization occurs during capacitation and prior to the acrosome reaction, fast F-actin breakdown takes place. The increase in F-actin during capacitation depends upon inactivation of the actin severing protein, gelsolin, by its binding to phosphatydilinositol-4, 5-bisphosphate (PIP 2 ) and its phosphorylation on tyrosine-438 by Src. Activation of gelsolin following its release from PIP 2 is known to cause F-actin breakdown and inhibition of sperm motility, which can be restored by adding PIP 2 to the cells. Reduction of PIP 2 synthesis inhibits actin polymerization and motility, while increasing PIP 2 synthesis enhances these activities. Furthermore, sperm demonstrating low motility contained low levels of PIP 2 and F-actin. During capacitation there was an increase in PIP 2 and F-actin levels in the sperm head and a decrease in the tail. In spermatozoa with high motility, gelsolin was mainly localized to the sperm head before capacitation, whereas in low motility sperm, most of the gelsolin was localized to the tail before capacitation and translocated to the head during capacitation. We also showed that phosphorylation of gelsolin on tyrosine-438 depends upon its binding to PIP 2 . Stimulation of phospholipase C, by Ca 2 + -ionophore or by activating the epidermal-growth-factor-receptor, inhibits tyrosine phosphorylation of gelsolin and enhances enzyme activity. In conclusion, these data indicate that the increase of PIP 2 and/or F-actin in the head during capacitation enhances gelsolin translocation to the head. As a result, the decrease of gelsolin in the tail allows the maintenance of high levels of F-actin in this structure, which is essential for the development of HA motility.

MeSH Terms
Acrosome Reaction/physiology Actins/genetics,physiology Gelsolin/genetics,metabolism Humans Male Phosphatidylinositol 4,5-Diphosphate/genetics,physiology Sperm Capacitation/physiology
Chemicals
Actins Gelsolin Phosphatidylinositol 4,5-Diphosphate
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Breitbart Haim
The Mina and Everard Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.
Finkelstein Maya
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Article Info
Journal
Asian journal of andrology
Abbr.
Asian J Androl
ISSN
1745-7262
Published
2015-00-00
Pages
597-600
Language
English
Region
China
NLM ID
100942132
PMCID
PMC4492050
Subset
IM
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