4.6 Article

The early molecular events leading to COFILIN phosphorylation during mouse sperm capacitation are essential for acrosomal exocytosis

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 298, Issue 6, Pages -

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ELSEVIER
DOI: 10.1016/j.jbc.2022.101988

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Funding

  1. Agencia Nacional de Promocion Cientifica y Tecnologica, Argentina [PICT 2015-2294, 2017-3047, 2018-1988]

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RAC1 and PAK4 regulate actin polymerization in the sperm head necessary for acrosomal exocytosis (AR), while Slingshot family of protein phosphatases (SSH1) is regulated by RHOA/C and RAC1 for the transient phosphorylation of COFILIN.
The actin cytoskeleton reorganization during sperm capacitation is essential for the occurrence of acrosomal exocytosis (AR) in several mammalian species. Here, we demonstrate that in mouse sperm, within the first minutes of exposure upon capacitating conditions, the activity of RHOA/C and RAC1 is essential for LIMK1 and COFILIN phosphorylation. However, we observed that the signaling pathway involving RAC1 and PAK4 is the main player in controlling actin polymerization in the sperm head necessary for the occurrence of AR. Moreover, we show that the transient phosphorylation of COFILIN is also influenced by the Slingshot family of protein phosphatases (SSH1). The activity of SSH1 is regulated by the dual action of two pathways. On one hand, RHOA/C and RAC1 activity promotes SSH1 phosphorylation (inactivation). On the other hand, the activating dephosphorylation is driven by okadaic acid-sensitive phosphatases. This regulatory mechanism is independent of the commonly observed activating mechanisms involving PP2B and emerges as a new finely tuned modulation that is, so far, exclusively observed in mouse sperm. However, persistent phosphorylation of COFILIN by SSH1 inhibition or okadaic acid did not altered actin polymerization and the AR. Altogether, our results highlight the role of small GTPases in modulating actin dynamics required for AR.

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