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2篇 您的检索式:作者名="P. Mansuelle"
    题名 作者 年代 出处 被引量
1东亚钳蝎昆虫毒素BmK IT的初级结构研究显示文摘从中国产东亚钳蝎(Buthus martensi Karsch)毒中纯化的一个昆虫毒素BmK IT经还原和羧甲基化处理后,分别用TPCK-胰蛋白酶和金黄色葡萄球菌蛋白酶进行用TLC-薄膜分离酶解的肽段并分别测定了它们的氨基酸顺序。将BmK IT及其酶解肽段的氨基酸顺序的测定结果与由非洲产蝎Androctonus australis Hector毒中纯化的昆虫毒素AaH IT的初级结构进行参照对比,我们发现两种昆虫毒素的分子结构中仅有16个残基部位发生了变异,其同源性高达75%以上。这一结果为探讨蝎昆虫毒素的分子结构特征以及结构与功能的相互关系提供了重要资料,也为这类毒素的开发利用,如作为神经生物科学研究中的工具物或探讨作为生物杀虫剂的可能性等提供了必要的分子基础。吉永华 P. Mansuelle 徐科 C.Granier C.Kopeyan S. Terakawa H. Rochat 1993中国科学(B辑)1993,23,1:7
2Amino Acid Sequence of an Excitatory Insect-selective Toxin (BmK IT) From Venom of the Scorpion Buthus martensi Karsch显示文摘The insect-selective neurotoxin(BmK IT) of scorpion Buthus martensi Karsch was first reduced and S-alkylated, and then digested by TPCK-trypsin and Staphylococcus aureus V-8 Protease. The enzymatic peptides were purified on TLC-plastic sheet and submitted to determine their amino acid compositions and sequences. The sequence of the 70 amino acid residues of BmK IT was established with reference to the primary structure of AaH IT, another excitatory insect-selective toxin from the venom of North African scorpion Androctonus australis Hector. About 75% of the homologous sequence was found in the molecules of BmK IT and AaH IT. It is obvious that the results contribute toward better understanding of the molecular structure characteristics, structure/activity relationship of scorpion insect-selective toxins, and they can serve as the molecular basis for utilizing the toxins as a tool to clarify molecular mechanism involved in channel gating, and to infer the possibility of developing them as new selective吉永华 P. Mansuelle 徐科 C. Granier C. Kopeyan S. Terakawa H. Rochat 1994Science China Chemistry1994,37,1:5
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