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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Covalent structures of BmK AS and BmK AS-1, two novel bioactive polypeptides purified from Chinese scorpion Buthus martensi Karsch
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Covalent structures of BmK AS and BmK AS-1, two novel bioactive polypeptides purified from Chinese scorpion Buthus martensi Karsch

机译:BmK AS和BmK AS-1的共价结构,是从蝎子Buthus martensi Karsch纯化得到的两种新型生物活性多肽

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摘要

Complete amino acid sequences of two novel bioactive polypeptides, each containing 66 amino acid residues, BmK AS and BmK AS-1 purified from the venom of Chinese scorpion Buthus martensi Karsch, have been determined by Edman sequencing and mass spectrometry on native proteins, reduced and S-carboxymethylated proteins and their peptides obtained after cleavage with proteolytic enzymes. Sequence analysis showed 86.4% structural identity between BmK AS and BmK AS-1 and also a high sequence similarity between BmK ASs and AaH IT4, a unique anti-insect toxin and a ligand of Na~+ channels obtained from Sahara scorpion A. australis Hector, but poor sequence homology between BmK ASs and those of the known #alpha#-, #beta#-type and long-chain insect-selective type scorpion neurotoxins. The positions of four disulfide bridges in BmK AS-1 were established as Cys-12 and Cys-62, Cys-16 and Cys-37, Cys-23 and Cys-44, and Cys-27 and Cys-46, which are the same as those in #alpha#- and #beta#-scorpion neurotoxins. These results suggest that BmK ASs and AaH IT4 may form a new group sharing similar structural and functional properties in the family of scorpion neurotoxic polypeptides.
机译:两种新的生物活性多肽的完整氨基酸序列,均包含66个氨基酸残基,分别是从中国蝎子Buthus martensi Karsch毒液中纯化得到的BmK AS和BmK AS-1,已通过Edman测序和质谱对天然蛋白质进行了还原,用蛋白水解酶切割后获得的S-羧甲基化蛋白及其肽。序列分析表明,BmK AS和BmK AS-1之间具有86.4%的结构同一性,并且BmK AS和AaH IT4之间具有高度的序列相似性,这是一种独特的抗昆虫毒素和从撒哈拉蝎A. australis Hector获得的Na〜+通道的配体。 ,但BmK AS与已知的#alpha#-,#beta#-型和长链昆虫选择型蝎神经毒素的序列同源性差。 BmK AS-1中的四个二硫键的位置分别为Cys-12和Cys-62,Cys-16和Cys-37,Cys-23和Cys-44,Cys-27和Cys-46。与#alpha#-和#beta#-蝎子神经毒素中的相同。这些结果表明,BmK AS和AaH IT4可能会构成一个新的群体,在蝎子神经毒性多肽家族中具有相似的结构和功能特性。

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