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Structural and molecular characterization of equine sperm-binding fibronectin-II module proteins

Authors :
Christiane Kirchhoff
Peter Müller
Edda Töpfer-Petersen
Simone Bellair
Mahnaz Ekhlasi-Hundrieser
Oliver Hess
Bettina Schäfer
Source :
Molecular Reproduction and Development. 70:45-57
Publication Year :
2004
Publisher :
Wiley, 2004.

Abstract

Phospholipid-binding proteins in the male genital tract are characterized by differing numbers Fn-2 modules (B-domain) carrying N-term- inal extensions (A-domain) of variable length. In the stallion, three different proteins were identified, SP-1, SP-2, and EQ-12. SP-1 and SP-2 of the AA 0 BB 0 - and ABB 0 -type, respectively, are major proteins of the seminal plasma. Here we report the cDNA sequences of SP-1, and of a new member of the SP-2 family (SPnew) and the partial characterization of their iso- and glycoforms. The phosphorylcholine (PC)-binding ability of the long Fn-2 protein, EQ-12, with four tandemly arranged Fn-2 modules was determined by PC-affinity chromatography. Expression patterns of EQ-12, and the SP-proteins were studied by means of RT-PCR, Northern blot analysis and immunological approaches indicating differential expression along the male reproductive tract. The vast majority of the short SP-1 and SP-2 proteins are produced by the ampulla whereas EQ-12 originates from the epididymis. In- direct immunofluorescence microscopy of sperm iso- lated from different regions of the epididymis and Western blot analysis indicate that both, the long and the short Fn-2 proteins associate to the sperm surface during post-testicular maturation. Sperm binding of Fn-2 proteins at the post-acrosome and midpiece was at first detected in the corpus epididymis. Enhanced fluorescence intensity after ejaculation point to an increased number of molecules bound to the sperm surface. The function of these proteins is discussed in regard to their structure-function relationships. Mol. Reprod. Dev. 70: 45-57, 2004. 2004 Wiley-Liss, Inc.

Details

ISSN :
1040452X
Volume :
70
Database :
OpenAIRE
Journal :
Molecular Reproduction and Development
Accession number :
edsair.doi...........d2813cf053418aa49907fdbff3af3922
Full Text :
https://doi.org/10.1002/mrd.20187