A long insertion reverts the functional effect of a substitution in acetylcholinesterase.

F Villatte, H Schulze, R D Schmid, T T Bachmann
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引用次数: 3

Abstract

Proteins are thought to undertake single substitutions, deletions and insertions to explore the fitness landscape. Nevertheless, the ways in which these different kind of mutations act together to alter a protein phenotype remain poorly described. We introduced incrementally the single substitution W290A and a 26 amino acid long insertion at the 297 location in the Nippostrongylus brasiliensis acetylcholinesterase B sequence and analysed in vitro the induced changes in the hydrolysis rate of three hemi-substrates: pirimicarb, paraoxon methyl and omethoate. The substitution decreased the hydrolysis rate of the three hemi-substrates. The insertion did not influence this kinetic alteration induced by the substitution for the former hemi-substrate, but reverted it for the two others. These results show that two different kinds of mutations can interact together to influence the direction of a protein's adaptative walk on the fitness landscape.

长插入恢复乙酰胆碱酯酶取代的功能效果。
蛋白质被认为通过单次替换、缺失和插入来探索适应性景观。然而,这些不同类型的突变是如何共同作用来改变蛋白质表型的,目前还没有得到很好的描述。我们在巴西尼波圆线虫乙酰胆碱酯酶B序列中逐渐引入W290A单取代和297位26个氨基酸长的插入,并在体外分析了吡乐威、对氧磷和乐果三种半底物对水解率的影响。取代降低了三种半底物的水解速率。插入不影响由前半底物取代引起的动力学改变,但使另外两个半底物的动力学改变恢复。这些结果表明,两种不同类型的突变可以相互作用,影响蛋白质在适应性景观中的适应性行走方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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