4.4 Article

CABYRY, a novel calcium-binding tyrosine phosphorylation-regulated fibrous sheath protein involved in capacitation

期刊

DEVELOPMENTAL BIOLOGY
卷 242, 期 2, 页码 236-254

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1006/dbio.2001.0527

关键词

CABYR; spermatozoa; capacitation; calcium-binding protein; fibrous sheath; tyrosine phosphorylation; postmeiotic expression

资金

  1. NICHD NIH HHS [D43 HD 00654] Funding Source: Medline
  2. PHS HHS [U54 29099, P30 28934] Funding Source: Medline

向作者/读者索取更多资源

To reach fertilization competence, sperm undergo an incompletely understood series of morphological and molecular maturational processes, termed capacitation, involving, among other processes, protein tyrosine phosphorylation and increased intracellular calcium. Hyperactivated motility and an ability to undergo the acrosome reaction serve as physiological end points to assess successful capacitation. We report here that acidic (pI 4.0) 86-kDa isoforms of a novel, polymorphic, testis-specific protein, designated calcium-binding tyrosine phosphorylation-regulated protein (CABYR), were tyrosine phosphorylated during in vitro capacitation and bound Ca-45 on 2D gels. Acidic 86-kDa calcium-binding forms of CABYR increased during in vitro capacitation, and calcium binding to these acidic forms was abolished by dephosphorylation with alkaline phosphatase. Six variants of CABYR containing two coding regions (CR-A and CR-B) were cloned from human testis cDNA libraries, including five variants with alternative splice deletions. A motif homologous to the RII dimerization domain of PK-A was present in the N-terminus of CR-A in four CABYR variants. A single putative EF handlike motif was noted in CR-A at aas 197-209, while seven potential tyrosine phosphorylation-like sites were noted in CR-A and four in CR-B. Pro-X-X-Pro (PXXP) modules were identified in the N- and C-termini of CR-A and CR-B. CABYR localizes to the principal piece of the human sperm flagellum in association with the fibrous sheath and is the first demonstration of a sperm protein that gains calcium-binding capacity when phosphorylated during capacitation. (C) 2002 Elsevier Science (USA).

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