4.7 Article

Cyclic AMP and glycogen synthase kinase 3 form a regulatory loop in spermatozoa

期刊

JOURNAL OF CELLULAR PHYSIOLOGY
卷 233, 期 9, 页码 7239-7252

出版社

WILEY
DOI: 10.1002/jcp.26557

关键词

cAMP; fertilization; GSK3; PP12; sperm

资金

  1. National Institute of Health (NIH), USA [R21HD086839]

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The multifaceted glycogen synthase kinase (GSK3) has an essential role in sperm and male fertility. Since cyclic AMP (cAMP) plays an important role in sperm function, we investigated whether GSK3 and cAMP pathways may be interrelated. We used GSK3 and soluble adenylyl cyclase (sAC) knockout mice and pharmacological modulators to examine this relationship. Intracellular cAMP levels were found to be significantly lower in sperm lacking GSK3 or GSK3. A similar outcome was observed when sperm cells were treated with SB216763, a GSK3 inhibitor. This reduction of cAMP levels was not due to an effect on sperm adenylyl cyclase but was caused by elevated phosphodiesterase (PDE) activity. The PDE4 inhibitor RS25344 or the general PDE inhibitor IBMX could restore cAMP levels in sperm lacking GSK3 or -isoform. PDE activity assay also showed that hyperactivated PDE4 contributes in lowering of cAMP levels in GSK3 null sperm suggesting that in wild-type sperm PDE4 activity is kept in check by GSK3. Conversely, PKA being triggered by cAMP, affected GSK3 activity through increasing its phosphorylation. Increased GSK3 phosphorylation also occurred by inhibition of sperm specific protein phosphatase type 1, PP12. The relationship between cAMP, GSK3, and PP12 activities was also confirmed in sperm from sAC null mice. Pull-down assay using recombinant PP12 indicated that PKA, GSK3, and PP12 could exist as a complex. Pharmacological inhibition of GSK3 in mature spermatozoa resulted in significantly reduced fertilization of eggs in vitro. Our results show that cAMP, PKA, and GSK3 are interrelated in regulation of sperm function.

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