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非洲爪蟾卵胶中凝集素结合位点的分布

Distribution of lectin binding sites in Xenopus laevis egg jelly.

作者信息

Mozingo N M, Hedrick J L

机构信息

Section of Molecular and Cellular Biology, University of California, Davis, Davis, California, 95616, USA.

出版信息

Dev Biol. 1999 Jun 15;210(2):428-39. doi: 10.1006/dbio.1999.9289.

Abstract

Eggs from the anuran Xenopus laevis are surrounded by a thick jelly coat that is required during fertilization. The jelly coat contains three morphologically distinct layers, designated J1, J2, and J3. We examined the lectin binding properties of the individual jelly coat layers as a step in identifying jelly glycoproteins that may be essential in fertilization. The reactivity of 31 lectins with isolated jelly coat layers was examined with enzyme-linked lectin-assays (ELLAs). Using ELLA we found that most of the lectins tested showed some reactivity to all three jelly layers; however, two lectins showed jelly layer selectivity. The lectin Maackia amurensis (MAA) reacted only with J1 and J2, while the lectin Trichosanthes kirilowii (TKA) reacted only with J2 and J3. Some lectins were localized in the jelly coat using confocal microscopy, which revealed substantial heterogeneity in lectin binding site distribution among and within jelly coat layers. Wheat germ agglutinin (WGA) bound only to the outermost region of J3 and produced a thin, but very intense, band of fluorescence at the J1/J2 interface while the remainder of J2 stained lightly. The lectin MAA produced an intense fluorescence-staining pattern only at the J1/J2 interface. Several lectins were also tested for the ability to inhibit fertilization. WGA, MAA, and concanavalin A significantly inhibited fertilization and WGA was found to block fertilization by preventing sperm from penetrating the jelly. Using Western blotting, we identified high-molecular-weight components in J1 and J2 that may be important in fertilization.

摘要

非洲爪蟾(Xenopus laevis)的卵被一层厚厚的卵胶膜所包裹,这层卵胶膜在受精过程中是必需的。卵胶膜包含三个形态上不同的层,分别命名为J1、J2和J3。我们检测了各个卵胶膜层的凝集素结合特性,以此作为鉴定受精过程中可能至关重要的卵胶糖蛋白的第一步。通过酶联凝集素分析(ELLA)检测了31种凝集素与分离出的卵胶膜层的反应性。使用ELLA我们发现,大多数测试的凝集素对所有三层卵胶膜都有一定反应;然而,有两种凝集素表现出卵胶膜层选择性。凝集素马尿泡凝集素(MAA)仅与J1和J2反应,而凝集素栝楼凝集素(TKA)仅与J2和J3反应。使用共聚焦显微镜观察,一些凝集素定位在卵胶膜中,这揭示了卵胶膜层之间以及层内凝集素结合位点分布存在显著的异质性。麦胚凝集素(WGA)仅与J3的最外层区域结合,并在J1/J2界面产生一条细但非常强烈的荧光带,而J2的其余部分染色较浅。凝集素MAA仅在J1/J2界面产生强烈的荧光染色模式。还测试了几种凝集素抑制受精的能力。WGA、MAA和伴刀豆球蛋白A显著抑制受精,并且发现WGA通过阻止精子穿透卵胶膜来阻断受精。使用蛋白质免疫印迹法,我们在J1和J2中鉴定出可能在受精过程中起重要作用的高分子量成分。

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