Literature DB >> 21508901

Molecular events that regulate mammalian fertilization.

D R P Tulsiani1, A Abou-Haila.   

Abstract

Mammalian fertilization is the net result of a highly programmed sequence of molecular events that collectively result in the union of two radically different looking haploid cells, sperm and egg, to form a diploid zygote. For successful fertilization, sperm cells undergo continuous modifications during their formation in the testis, maturation in the epididymis, and capacitation in the female genital tract. Only capacitated acrosome-intact spermatozoa are capable of binding to the egg's extracellular coat, the zona pellucida (ZP) in a receptor-ligand manner. The species-specific irreversible binding of the opposite gametes elevates intrasperm Ca2+ and triggers a signal transduction cascade that results in the fusion of the sperm plasma membrane and outer acrosomal membrane at multiple sites (i.e., induction of the acrosomal reaction) and the secretion of acrosomal contents. The hydrolytic action of the acrosomal enzymes (i.e., glycohydrolases, proteinases etc.) released at the site of sperm-egg binding along with the hyperactivated beat pattern of the bound spermatozoon, are important factors that regulate its penetration of the ZP and fertilization of the egg. In this article, we intend to discuss data from this and other laboratories that provide useful insights into biology underlying sperm development in the testis, maturation in the epididymis, capacitation in the female genital tract, sperm-egg interaction, and induction of the acrosome reaction (AR) before the acrosome reacted sperm can fertilize an egg. Our intention is also to discuss how Ca2+ signaling cascades regulate sperm functions and male fertility. Finally, we will discuss sperm molecules that are under intensive research to regulate male fertility.

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Year:  2011        PMID: 21508901

Source DB:  PubMed          Journal:  Minerva Ginecol        ISSN: 0026-4784


  5 in total

1.  Role of human Na,K-ATPase alpha 4 in sperm function, derived from studies in transgenic mice.

Authors:  Jeffrey McDermott; Gladis Sánchez; Ajay K Nangia; Gustavo Blanco
Journal:  Mol Reprod Dev       Date:  2015-01-14       Impact factor: 2.609

2.  Normal Fertility Requires the Expression of Carbonic Anhydrases II and IV in Sperm.

Authors:  Petra M Wandernoth; Nadja Mannowetz; Jaroslaw Szczyrba; Laura Grannemann; Anne Wolf; Holger M Becker; William S Sly; Gunther Wennemuth
Journal:  J Biol Chem       Date:  2015-10-20       Impact factor: 5.157

Review 3.  Importance of SLC26 Transmembrane Anion Exchangers in Sperm Post-testicular Maturation and Fertilization Potential.

Authors:  Aminata Touré
Journal:  Front Cell Dev Biol       Date:  2019-10-18

Review 4.  Biological Processes that Prepare Mammalian Spermatozoa to Interact with an Egg and Fertilize It.

Authors:  Daulat R P Tulsiani; Aïda Abou-Haila
Journal:  Scientifica (Cairo)       Date:  2012-05-29

5.  Flow-cytometric analysis of membrane integrity of stallion sperm in the face of agglutination: the "zombie sperm" dilemma.

Authors:  Isabel Ortiz; Matheus Felix; Hélène Resende; Luisa Ramírez-Agámez; Charles C Love; Katrin Hinrichs
Journal:  J Assist Reprod Genet       Date:  2021-05-15       Impact factor: 3.412

  5 in total

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