The species-specificity and structure of abalone sperm lysin

Andrew Shaw, Youn-Ho Lee, C.David Stout, Victor D. Vacquier
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引用次数: 24

Abstract

Abalone sperm lysin is a 16 kDa protein that creates a hole in the egg vitelline envelope (VE) to allow the sperm to fuse with the egg. Purified lysin exhibits quantitative species-specificity in the dissolution of isolated VE. The molecular basis for this specificity has been studied by sequencing lysin cDNA and by solving the lysin crystal structure. In the deduced amino acid sequences of lysins of seven species of California abalones 50% of the positions are invariant. The most highly variable and strictly species-specific region is the amino-terminal domain of residues 2-12. The crystal structure of lysin reveals a highly α-helical protein with a novel fold. Two tracks of basic amino acids run the length of the molecule. A hydrophobic patch of 11 residues lies on the opposite surface from the basic tracks. The species-specific domain of positions 2-12 extends away from the helical core. Mapping the species-variable positions onto the lysin structure indicates regions which could be involved in species-specific molecular recognition.

鲍鱼精子溶素的种类特异性和结构
鲍鱼精子溶酶是一种16kda的蛋白质,它在卵黄膜(VE)上制造一个洞,使精子与卵子融合。纯化的溶酶在分离VE的溶出中表现出定量的物种特异性。这种特异性的分子基础已经通过测序裂解酶cDNA和裂解酶晶体结构进行了研究。在推导出的7种加州鲍鱼溶解酶的氨基酸序列中,50%的位置是不变的。最高度可变和严格的种特异性区域是残基2-12的氨基末端结构域。溶酶蛋白的晶体结构显示出一种具有新颖褶皱的高α-螺旋蛋白。两条碱基氨基酸的轨迹贯穿于分子的长度。由11个残基组成的疏水性斑块位于与基本轨道相对的表面。位置2-12的物种特异性结构域从螺旋核心延伸出去。将物种可变位置映射到溶酶结构上,表明可能涉及物种特异性分子识别的区域。
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