蛇毒磷脂酶及其抑制剂序列同源性研究。保加利亚蝰蛇(Vipera ammodytes ammodytes, Serpentes)毒液中毒毒素抑制剂的初级结构。

I Mancheva, T Kleinschmidt, B Aleksiev, G Braunitzer
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引用次数: 53

摘要

我们正在展示一个蛇毒抑制剂的第一个初级结构。它是从保加利亚蝰蛇(Vipera ammodytes ammodytes, Serpentes)的神经毒素vipoxin中分离出来的,vipoxin是一种具有磷脂酶A2活性(2同工酶)的强毒性碱性蛋白的复合体,无毒酸性成分作为其抑制剂。该序列在s -羧甲基化链和氧化链经胰蛋白酶水解得到的肽上通过液相测序仪自动降解建立。氧化链的有限胰蛋白酶消化提供了必要的重叠肽。该抑制剂由122个氨基酸残基组成,其中包括14个半胱氨酸残基和10个酪氨酸残基,因此与蛇毒中的磷脂酶相似。将该抑制剂序列与角蝰蛇(Bitis nasicornis)毒液中磷脂酶A2 (CM-II)的一级结构进行比较,发现惊人的同源性为52%。相同的氨基酸包括半胱氨酸残基和酪氨酸残基,通常在半胱氨酸残基周围积累。磷脂酶A2活性中心的组氨酸(pos. 47)在抑制剂中被谷氨酰胺取代,但存在酶活性所必需的色氨酸(pos. 30)。vipoxin复合体中酶和抑制剂之间的显著同源性被认为源于基因复制。与其他酶抑制剂系统相比,爬行动物和蛇毒复合物的相对较晚的发展解释了其高度保存的结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequence homology between phospholipase and its inhibitor in snake venom. The primary structure of the inhibitor of vipoxin from the venom of the Bulgarian viper (Vipera ammodytes ammodytes, Serpentes).

We are presenting the first primary structure of a snake venom inhibitor. It was isolated from the neurotoxin vipoxin of the Bulgarian Viper (Vipera ammodytes ammodytes, Serpentes) which represents a complex of a strong toxic basic protein with phospholipase A2 activity (2 isoenzymes) and the nontoxic acidic component functioning as its inhibitor. The sequence was established by automatic degradation in a liquid phase sequenator on the S-carboxymethylated chain and on the peptides obtained by tryptic hydrolysis of the oxidized chain. A limited tryptic digestion of the oxidized chain provided the necessary overlapping peptides. The inhibitor consists of 122 amino-acid residues including 14 cysteine and 10 tyrosine residues and is thus similar to the phospholipases from snake venoms. A comparison of the inhibitor sequence with the primary structure of the phospholipase A2 (CM-II) from the Horned Adder (Bitis nasicornis) venom shows a surprising homology of 52%. The identical amino acids include the cysteine and tyrosine residues and are generally accumulated in the surroundings of cysteine residues. The histidine (pos. 47) in the active center of the phospholipase A2 is substituted by glutamine in the inhibitor, but the tryptophan (pos. 30) which is essential for the enzymatic activity is present. The significant homology between enzyme and inhibitor in the vipoxin complex is believed to originate from a gene duplication. The relatively late development of the reptiles and the snake venom complex explains the highly preserved structure compared to other enzyme-inhibitor systems.

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