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糖基化的公猪精子黏附素AWN-1亚型。生物学来源、通过凝集素图谱进行的结构表征、O-糖基化位点的定位以及糖基化对配体结合的影响。

Glycosylated boar spermadhesin AWN-1 isoforms. Biological origin, structural characterization by lectin mapping, localization of O-glycosylation sites, and effect of glycosylation on ligand binding.

作者信息

Calvete J J, Solís D, Sanz L, Díaz-Mauriño T, Töpfer-Petersen E

机构信息

Institut für Reproduktionsmedizin, Tierärztiche Hochschule, Hannover, Germany.

出版信息

Biol Chem Hoppe Seyler. 1994 Oct;375(10):667-73. doi: 10.1515/bchm3.1994.375.10.667.

Abstract

Spermadhesin AWN-1 is a 133-residues boar sperm surface lectin with capability to bind different ligands, e.g. glycoproteins from zona pellucida (ZP), soybean trypsin inhibitor and heparin, and is involved in capacitation and binding of spermatozoa to the homologous zona pellucida. Here, we report the characterization of N- and O-glycosylated isoforms of AWN-1. Non-glycosylated AWN-1 is present in seminal plasma and on epididymal and ejaculated spermatozoa whereas its N- and O-glycosylated isoforms are only secretory products of the seminal vesicles. Lectin mapping indicated the presence of the glycosylated AWN-1 isoform mixture of both fucosylated and non-fucosylated N-glycans, and of two different classes of O-linked carbohydrate chains. These N- and O-linked oligosaccharide chains are neither sialylated nor contain terminal Gal beta (1-4)-GlcNAc sequences. Noteworthy, N- and O-glycosylation (either class) are mutually exclusive on the same protein molecule, indicating that each glycosylated AWN-1 molecule contains a single oligosaccharide chain. Peptide mapping was used to locate the N- and the O-glycosylation sites. Glycosylation of AWN-1 with either of the carbohydrate chain types greatly impaired the ability of the spermadhesin to bind biotinylated zona pellucida glycoproteins and soybean trypsin inhibitor, suggesting that the blocking effect may be due to steric hindrance of the ligand-binding pocket.

摘要

精子黏附素AWN-1是一种由133个氨基酸残基组成的公猪精子表面凝集素,能够结合不同的配体,如来自透明带(ZP)的糖蛋白、大豆胰蛋白酶抑制剂和肝素,并参与精子的获能以及精子与同源透明带的结合。在此,我们报道了AWN-1的N-糖基化和O-糖基化异构体的特性。非糖基化的AWN-1存在于精浆以及附睾精子和射出精子上,而其N-糖基化和O-糖基化异构体仅是精囊的分泌产物。凝集素定位显示存在岩藻糖基化和非岩藻糖基化N-聚糖的糖基化AWN-1异构体混合物,以及两类不同的O-连接碳水化合物链。这些N-连接和O-连接的寡糖链既不含有唾液酸,也不含有末端Galβ(1-4)-GlcNAc序列。值得注意的是,N-糖基化和O-糖基化(任何一类)在同一蛋白质分子上是相互排斥的,这表明每个糖基化的AWN-1分子只含有一条寡糖链。肽图谱分析用于定位N-糖基化和O-糖基化位点。用任何一种碳水化合物链类型对AWN-1进行糖基化都会极大地损害精子黏附素结合生物素化透明带糖蛋白和大豆胰蛋白酶抑制剂的能力,这表明这种阻断作用可能是由于配体结合口袋的空间位阻所致。

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