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Ezrin: a regulator of actin microfilaments in ce unctions of the rat testis 被引量:1

Ezrin: a regulator of actin microfilaments in ce unctions of the rat testis
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摘要 Ezrin, radixin, moesin and merlin (ERM) proteins are highly homologous actin-binding proteins that share extensive sequence similarity with each other. These proteins tether integral membrane proteins and their cytoplasmic peripheral proteins (e.g., adaptors, nonreceptor protein kinases and phosphatases) to the microfilaments of actin-based cytoskeleton. Thus, these proteins are crucial to confer integrity of the apical membrane domain and its associated junctional complex, namely the tight junction and the adherens junction. Since ectoplasmic specialization (ES) is an F-actin-rich testis-specific anchoring junction-a highly dynamic ultrastructure in the seminiferous epithelium due to continuous transport of germ cells, in particular spermatids, across the epithelium during the epithelial cycle-it is conceivable that ERM proteins are playing an active role in these events. Although these proteins were first reported almost 25 years and have since been extensively studied in multiple epithelia/endothelia, few reports are found in the literature to examine their role in the actin filament bundles at the ES. Studies have shown that ezrin is also a constituent protein of the actin-based tunneling nanotubes (TNT) also known as intercellular bridges, which are transient cytoplasmic tubular ultrastructures that transport signals, molecules and even organelles between adjacent and distant cells in an epithelium to coordinate cell events that occur across an epithelium. Herein, we critically evaluate recent data on ERM in light of recent findings in the field in particular ezrin regarding its role in actin dynamics at the ES in the testis, illustrating additional studies are warranted to examine its physiological significance in spermatogenesis. Ezrin, radixin, moesin and merlin (ERM) proteins are highly homologous actin-binding proteins that share extensive sequence similarity with each other. These proteins tether integral membrane proteins and their cytoplasmic peripheral proteins (e.g., adaptors, nonreceptor protein kinases and phosphatases) to the microfilaments of actin-based cytoskeleton. Thus, these proteins are crucial to confer integrity of the apical membrane domain and its associated junctional complex, namely the tight junction and the adherens junction. Since ectoplasmic specialization (ES) is an F-actin-rich testis-specific anchoring junction-a highly dynamic ultrastructure in the seminiferous epithelium due to continuous transport of germ cells, in particular spermatids, across the epithelium during the epithelial cycle-it is conceivable that ERM proteins are playing an active role in these events. Although these proteins were first reported almost 25 years and have since been extensively studied in multiple epithelia/endothelia, few reports are found in the literature to examine their role in the actin filament bundles at the ES. Studies have shown that ezrin is also a constituent protein of the actin-based tunneling nanotubes (TNT) also known as intercellular bridges, which are transient cytoplasmic tubular ultrastructures that transport signals, molecules and even organelles between adjacent and distant cells in an epithelium to coordinate cell events that occur across an epithelium. Herein, we critically evaluate recent data on ERM in light of recent findings in the field in particular ezrin regarding its role in actin dynamics at the ES in the testis, illustrating additional studies are warranted to examine its physiological significance in spermatogenesis.
出处 《Asian Journal of Andrology》 SCIE CAS CSCD 2015年第4期653-658,共6页 亚洲男性学杂志(英文版)
关键词 blood-testis barrier ectoplasmic specialization EZRIN SPERMATOGENESIS TESTIS blood-testis barrier ectoplasmic specialization ezrin spermatogenesis testis
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  • 1杨翠霞,刘鹥雯,何怡青,高锋.Src-MAPK信号通路参与透明质酸寡糖片段诱导PIEC细胞的增殖[J].分子细胞生物学报,2006,39(6):495-501. 被引量:2
  • 2Baumber J, Meyers SA. Changes in membrane lipid order with capacitation in rhesus macaque (Macaca mulatta) spermatozoa. J Androl 2006; 27: 578-87.
  • 3Harrison RA, Gadella BM. Bicarbonate-induced membrane processing in sperm capacitation. Theriogenology 2005; 63: 342-51.
  • 4Martinez P, Morros A. Membrane lipid dynamics during human sperm capacitation. Front Biosci 1996; 1: d103-17.
  • 5Companyo M, Iborra A, Villaverde J, Martinez P, Morros A. Membrane fluidity changes in goat sperm induced by cholesterol depletion using beta-cyclodextrin. Biochim Biophys Acta 2007; 1768: 2246-55.
  • 6Austin CR. The capacitation of the mammalian sperm. Nature 1952; 170: 326.
  • 7Chang MC. Fertilizing capacity of spermatozoa deposited into the fallopian tubes. Nature 1951; 168: 697-8.
  • 8Fusi FM, Bronson RA. Sperm surface fibronectin. Expression following capacitation. J Androl 1992; 13: 28-35.
  • 9Cohen-Dayag A, Eisenbach M. Potential assays for sperm capacitation in mammals. Am J Physiol 1994; 267:C1167-76.
  • 10Shadan S, James PS, Howes EA, Jones R. Cholesterol efflux alters lipid raft stability and distribution during capacitation of boar spermatozoa. Biol Reprod 2004; 71: 253-65.

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