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首页> 外文期刊>Journal of Biotechnology >Amino acid substitutions in alphaA and alphaC of Cyt2Aa2 alter hemolytic activity and mosquito-larvicidal specificity
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Amino acid substitutions in alphaA and alphaC of Cyt2Aa2 alter hemolytic activity and mosquito-larvicidal specificity

机译:Cyt2Aa2的alphaA和alphaC中的氨基酸取代会改变溶血活性和蚊幼虫特异性

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摘要

Cyt2Aa2 produced by Bacillus thuringiensis subsp. darmstadiensis exhibits in vitro cytolytic activity against broad range of cells but shows specific in vivo toxicity against larvae of Dipteran insects. To investigate the role of amino acids in alphaA and alphaC of this toxin, 3 single-point mutants (A61C, S108C and V109A) were generated. All 3 mutant proteins were highly produced as inclusion bodies that could be solubilized and activated by proteinase K similar to that of the wild type. Hemolytic activity of A61C and S108C mutants was significantly reduced whereas the V109A mutant showed comparable hemolytic activity to the wild type. Interestingly, the A61C mutant exhibited high larvicidal activity to both Aedes aegypti and Culex quinquefasciatus. S108C and V109A mutants showed low activity against C. quinquefasciatus but relatively high toxicity to A. aegypti. These results demonstrated for the first time that amino acids in alphaA and alphaC are involved in the selectivity of the Cyt toxin to the targeted organism.
机译:苏云金芽孢杆菌亚种产生的Cyt2Aa2。 darmstadiensis对多种细胞均表现出体外溶细胞活性,但对Dipteran昆虫的幼虫具有特定的体内毒性。为了研究氨基酸在该毒素的αA和αC中的作用,生成了3个单点突变体(A61C,S108C和V109A)。与野生型相似,所有3个突变蛋白都被高产为包涵体,可以被蛋白酶K溶解和激活。 A61C和S108C突变体的溶血活性明显降低,而V109A突变体显示出与野生型相当的溶血活性。有趣的是,A61C突变体对埃及伊蚊和库克斯库克斯瓜均表现出高杀幼虫活性。 S108C和V109A突变体表现出对西洋参假单胞菌的低活性,但对埃及伊蚊的毒性相对较高。这些结果首次证明了αA和αC中的氨基酸参与了Cyt毒素对目标生物的选择性。

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