Literature DB >> 15223849

Changes in sperm glycogen synthase kinase-3 serine phosphorylation and activity accompany motility initiation and stimulation.

Payaningal R Somanath1, Shannan L Jack, Srinivasan Vijayaraghavan.   

Abstract

Sperm motility is regulated by protein phosphorylation. We have shown that the signaling kinase, glycogen synthase kinase-3 alpha (GSK-3 alpha), is present in spermatozoa. In somatic cells, GSK-3 is regulated by serine and tyrosine phosphorylation. In this report, we document that both GSK-3 alpha and GSK-beta isoforms are present in spermatozoa, with GSK-3 alpha being the predominant isoform. The relationship between GSK-3 serine phosphorylation and motility was investigated. Serine phosphorylation of GSK-3 increases significantly in spermatozoa during their passage through the epididymis. Initiation and stimulation of motility in vitro by isobutyl-methyl-xanthine, 2-chloro-2'-deoxy-adenosine, and calyculin A lead to a dramatic increase in GSK-3 serine phosphorylation. The concentration-dependent induction of motility by calyculin A is closely associated with GSK-3 serine phosphorylation. Immunoprecipitation of GSK-3 alpha and GSK-3 beta shows that both of the GSK-3 isoforms are more active in caput than in caudal spermatozoa. Calyculin A treatment decreased the activity of both isoforms. Column chromatography was used to purify inactive GSK-3 alpha from the caudal sperm extracts. This GSK-3 alpha species was phosphorylated at amino acid residues serine 21 and tyrosine 214. Inactive GSK-3 alpha is present in caudal but not in caput epididymal spermatozoa. The enzymes protein kinase B (PKB; also known as cAkt) and phosphoinositide 3-kinase (PI3-kinase), the upstream signaling proteins involved in GSK-3 phosphorylation, are both present in spermatozoa. Fluorescence immunocytochemistry showed that GSK-3 is present in the head and tail regions of sperm. Our work suggests a novel role for the signaling system involving GSK-3 in the regulation of sperm motility.

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Year:  2004        PMID: 15223849     DOI: 10.1002/j.1939-4640.2004.tb02831.x

Source DB:  PubMed          Journal:  J Androl        ISSN: 0196-3635


  28 in total

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Authors:  Pranitha Jenardhanan; Premendu P Mathur
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2.  Signaling in sperm: toward a molecular understanding of the acquisition of sperm motility in the mouse epididymis.

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3.  Contributions of extracellular and intracellular Ca2+ to regulation of sperm motility: Release of intracellular stores can hyperactivate CatSper1 and CatSper2 null sperm.

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4.  Proteomic analysis of bovine sperm YWHA binding partners identify proteins involved in signaling and metabolism.

Authors:  Pawan Puri; Kimberley Myers; Douglas Kline; Srinivasan Vijayaraghavan
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5.  Targeted disruption of glycogen synthase kinase 3A (GSK3A) in mice affects sperm motility resulting in male infertility.

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Review 6.  Heads or tails? Structural events and molecular mechanisms that promote mammalian sperm acrosomal exocytosis and motility.

Authors:  Mariano G Buffone; Takashi W Ijiri; Wenlei Cao; Tanya Merdiushev; Haig K Aghajanian; George L Gerton
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7.  Cyclic AMP and glycogen synthase kinase 3 form a regulatory loop in spermatozoa.

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8.  Roles of glycogen synthase kinase 3 alpha and calcineurin in regulating the ability of sperm to fertilize eggs.

Authors:  Souvik Dey; Alaa Eisa; Douglas Kline; Florence F Wagner; Sanjaya Abeysirigunawardena; Srinivasan Vijayaraghavan
Journal:  FASEB J       Date:  2019-11-29       Impact factor: 5.191

9.  Regulators of the protein phosphatase PP1γ2, PPP1R2, PPP1R7, and PPP1R11 are involved in epididymal sperm maturation.

Authors:  Suranjana Goswami; Luís Korrodi-Gregório; Nilam Sinha; Sumit Bhutada; Rahul Bhattacharjee; Douglas Kline; Srinivasan Vijayaraghavan
Journal:  J Cell Physiol       Date:  2018-08-25       Impact factor: 6.384

10.  Post testicular sperm maturational changes in the bull: important role of the epididymosomes and prostasomes.

Authors:  Julieta Caballero; Gilles Frenette; Robert Sullivan
Journal:  Vet Med Int       Date:  2010-10-13
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