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Exploring residues crucial for nitrilase function by site directed mutagenesis to gain better insight into sequence-function relationships

机译:通过定点诱变探索对腈水解酶功能至关重要的残基,以更好地了解序列功能关系

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Nitrilases represent a very important class of enzymes having an array of applications. In the present scenario, where the indepth information about nitrilases is limited, the present work is an attempt to shed light on the residues crucial for the nitrilase activity. The nitrilase sequences demonstrating varying degree of identity with emP. putida/em nitrilase were explored. A stretch of residues, fairly conserved throughout the range of higher (96%) to lower (27%) sequence identity among different nitrilases was selected and investigated for the possible functional role in nitrilase enzyme system. Subsequently, the alanine substitution mutants (T48A, W49A, L50A, P51A, G52A, Y53A and P54A) were generated. Substitution of the rationally selected conserved residues altered the substrate recognition ability, catalysis and affected the substrate specificity but had very little impact on enantioselectivity and pattern of nitrile hydrolysis.
机译:亚硝酸酶代表具有许多应用的一类非常重要的酶。在目前的情况下,关于腈水解酶的深入信息有限,目前的工作是试图阐明对腈水解酶活性至关重要的残基。腈水解酶序列证明与 P具有不同程度的同一性。探索了恶臭恶臭的恶臭。选择了在不同腈水解酶中较高(96%)至较低(27%)序列同一性范围内相当保守的残基片段,并研究了其在腈水解酶系统中的可能功能。随后,产生丙氨酸取代突变体(T48A,W49A,L50A,P51A,G52A,Y53A和P54A)。合理选择的保守残基的取代改变了底物的识别能力,催化作用并影响了底物的特异性,但是对映体选择性和腈水解模式几乎没有影响。

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