Literature DB >> 15923385

Capacitation-associated protein tyrosine phosphorylation and membrane fluidity changes are impaired in the spermatozoa of asthenozoospermic patients.

Mariano G Buffone1, Juan C Calamera, Sandra V Verstraeten, Gustavo F Doncel.   

Abstract

Sperm protein tyrosine phosphorylation has been associated with capacitation, motility changes, zona binding, and fertilizing ability. We previously demonstrated that gradient-isolated human sperm subpopulations differ in their plasma membrane composition, their ability to phosphorylate proteins in tyrosine residues, and their capacity to undergo hyperactivation. In this study, we have characterized capacitation-associated changes in protein tyrosine phosphorylation and membrane fluidity in spermatozoa of asthenozoospermic and normozoospermic patients consulting for infertility. Semen samples were studied at baseline and after a capacitating incubation with or without the addition of a permeable cAMP analog and a phosphodiesterase inhibitor. Basic sperm and computer-assisted motion parameters, hyperactivation, protein tyrosine phosphorylation (immunofluorescence and Western blot), and membrane fluidity (fluorescent Laurdan probe) were the main study parameters. In comparison with normozoospermic and proven-fertile donor semen, asthenozoospermic samples showed lower motility, velocity, and amplitude of lateral head displacement, both originally and after a 6-h capacitating incubation. Unlike those in normal samples, asthenozoospermic spermatozoa were unable to increase protein tyrosine phosphorylation during capacitation. Such impairment, however, was overcome when they were incubated with a membrane-permeable cAMP analog and a phosphodiesterase inhibitor, indicating a possible membrane defect. Confirming this hypothesis, plasma membranes of asthenozoospermic sperm showed decreased fluidity (increased Laurdan polarization), even after a capacitating incubation. In conclusion, spermatozoa from functional asthenozoospermic samples may owe their poor motility, and their inability to properly capacitate and develop hyperactivation, to an impairment in the tyrosine phosphorylation of critical proteins caused by decreased membrane fluidity. These findings suggest a molecular pathogenetic mechanism for a common seminal pathology associated with male infertility.

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Year:  2005        PMID: 15923385     DOI: 10.1530/rep.1.00584

Source DB:  PubMed          Journal:  Reproduction        ISSN: 1470-1626            Impact factor:   3.906


  11 in total

1.  Cyclic 3',5'-AMP causes ADAM1/ADAM2 to rapidly diffuse within the plasma membrane of guinea pig sperm.

Authors:  Gary R Hunnicutt; Dennis E Koppel; Susanna Kwitny; Ann E Cowan
Journal:  Biol Reprod       Date:  2008-07-30       Impact factor: 4.285

2.  Oxidative stress impairs function and increases redox protein modifications in human spermatozoa.

Authors:  Tania Morielli; Cristian O'Flaherty
Journal:  Reproduction       Date:  2014-11-10       Impact factor: 3.906

3.  Peroxiredoxins prevent oxidative stress during human sperm capacitation.

Authors:  Donghyun Lee; Adel R Moawad; Tania Morielli; Maria C Fernandez; Cristian O'Flaherty
Journal:  Mol Hum Reprod       Date:  2017-02-10       Impact factor: 4.025

4.  Protective effects of Thai Mucuna pruriens (L.) DC. var. pruriens seeds on sexual behaviors and essential reproductive markers in chronic unpredictable mild stress mice.

Authors:  Pannawat Choowong-In; Jintana Sattayasai; Preecha Boonchoong; Chanasorn Poodendaen; Alexander Th Wu; Nareelak Tangsrisakda; Tarinee Sawatpanich; Supatcharee Arun; Nongnut Uabundit; Sitthichai Iamsaard
Journal:  J Tradit Complement Med       Date:  2021-12-15

5.  Targeted Analysis of HSP70 Isoforms in Human Spermatozoa in the Context of Capacitation and Motility.

Authors:  Sarah Grassi; Marie Bisconti; Baptiste Martinet; Vanessa Arcolia; Jean-François Simon; Ruddy Wattiez; Baptiste Leroy; Elise Hennebert
Journal:  Int J Mol Sci       Date:  2022-06-10       Impact factor: 6.208

Review 6.  Oxidative phosphorylation versus glycolysis: what fuel do spermatozoa use?

Authors:  Stefan S du Plessis; Ashok Agarwal; Gayatri Mohanty; Michelle van der Linde
Journal:  Asian J Androl       Date:  2015 Mar-Apr       Impact factor: 3.285

Review 7.  Major regulatory mechanisms involved in sperm motility.

Authors:  Rute Pereira; Rosália Sá; Alberto Barros; Mário Sousa
Journal:  Asian J Androl       Date:  2017 Jan-Feb       Impact factor: 3.285

8.  Zinc ion flux during mammalian sperm capacitation.

Authors:  Karl Kerns; Michal Zigo; Erma Z Drobnis; Miriam Sutovsky; Peter Sutovsky
Journal:  Nat Commun       Date:  2018-05-25       Impact factor: 14.919

9.  Tyrosine phosphorylation pattern in sperm proteins isolated from normospermic and teratospermic men.

Authors:  Jabbari Sepideh; Sadeghi Mohammad Reza; Akhondi Mohammad Mahdi; Ebrahim Habibi Azadeh; Amirjanati Naser; Lakpour Niknam; Asgharpour Lima; Ali M Ardekani
Journal:  J Reprod Infertil       Date:  2009-10

Review 10.  Molecular Basis of Human Sperm Capacitation.

Authors:  Lis C Puga Molina; Guillermina M Luque; Paula A Balestrini; Clara I Marín-Briggiler; Ana Romarowski; Mariano G Buffone
Journal:  Front Cell Dev Biol       Date:  2018-07-27
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