Literature DB >> 6416323

Gossypol inhibition of acrosin and proacrosin, and oocyte penetration by human spermatozoa.

W P Kennedy, H H Van der Ven, J W Straus, A K Bhattacharyya, D P Waller, L J Zaneveld, K L Polakoski.   

Abstract

Gossypol, a known antispermatogenic agent, was found to effectively inhibit the highly purified boar sperm proacrosin-acrosin proteinase enzyme system by irreversibly preventing the autoproteolytic conversion of proacrosin to acrosin and reversibly inhibiting acrosin activity. The agent appears to prevent the self-catalyzed by not the acrosin-catalyzed activation of proacrosin. In additional experiments, brief exposure of human semen to concentrations of gossypol, which did not visibly alter spermatozoal motility or forward progression, was found to irreversibly inhibit the conversion of proacrosin to acrosin although the activity of the nonzymogen acrosin was not decreased, and also to prevent the human spermatozoa from penetrating denuded hamster oocytes. Gossypol inhibition of proacrosin conversion to acrosin closely paralleled the decline in oocyte penetration. Racemic (+/-) gossypol was equally as effective as the enantiomer (+) gossypol. The results suggest that the inhibition of proacrosin conversion to acrosin is a mechanism by which gossypol exerts its antifertility effect at nonspermicidal concentrations and that low levels of gossypol should be tested for their contraceptive action when placed vaginally.

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Keywords:  Animals, Laboratory; Biology; Clinical Research; Examinations And Diagnoses; Fertilization; Genitalia; Germ Cells; Laboratory Examinations And Diagnoses; Laboratory Procedures; Physiology; Reproduction; Research Methodology; Sperm Capacitation; Spermatozoa--analysis; Urogenital System

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Year:  1983        PMID: 6416323     DOI: 10.1095/biolreprod29.4.999

Source DB:  PubMed          Journal:  Biol Reprod        ISSN: 0006-3363            Impact factor:   4.285


  1 in total

1.  Identification of differentially expressed genes associated with semigamy in Pima cotton (Gossypium barbadense L.) through comparative microarray analysis.

Authors:  Jessica Curtiss; Laura Rodriguez-Uribe; J McD Stewart; Jinfa Zhang
Journal:  BMC Plant Biol       Date:  2011-03-16       Impact factor: 4.215

  1 in total

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