首页> 外文期刊>World Journal of Microbiology & Biotechnology >Characterization of pncA mutations in pyrazinamide-resistant Mycobacterium tuberculosis isolates from Korea and analysis of the correlation between the mutations and pyrazinamidase activity
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Characterization of pncA mutations in pyrazinamide-resistant Mycobacterium tuberculosis isolates from Korea and analysis of the correlation between the mutations and pyrazinamidase activity

机译:耐吡嗪酰胺结核分枝杆菌韩国分离物中pncA突变的表征及突变与吡嗪酰胺酶活性之间的相关性分析

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摘要

To investigate the effect of natural pyrazinamidase (PncA) mutations on protein function, we analyzed expression and PncA activity of eight pncA point mutants identified in nineteen pyrazinamide-resistant Mycobacterium tuberculosis clinical isolates. Among them, two mutants (Y99D and T135P) showed high expression level and solubility comparable to those of the wild-type PncA protein, two (K48E and G97D) displayed low expression level and solubility, and four (C14R, H51P, W68S, and A146V) were insoluble. Interestingly, when possible structural effects of these mutations were predicted by the CUPSAT program based on the proposed three-dimensional structure of M. tuberculosis PncA, only two highly soluble mutant proteins (Y99D and T135P) were predicted to be stabilizing and have favorable torsion angles. However, the others exhibiting either low solubility or precipitation were foreseen to be destabilizing and/or have unfavorable torsion angles, suggesting that the alterations could interfere with proper protein folding, thereby decreasing or depleting protein solubility. A PncA activity assay demonstrated that two mutants (G97D and T135P) showed virtually no activity, but two other mutants (K48E and Y99D) exhibited wild-type activity, indicating that the PncA residues (Cys14, His51, Trp68, Gly97, Thr135, and Ala146) may be important for PncA activity and/or proper protein folding
机译:为了研究天然吡嗪酰胺酶(PncA)突变对蛋白质功能的影响,我们分析了在十九种吡嗪酰胺耐药结核分枝杆菌临床分离株中鉴定出的八个pncA点突变体的表达和PncA活性。其中,两个突变体(Y99D和T135P)表现出与野生型PncA蛋白相当的高表达水平和溶解度,两个(K48E和G97D)表现出较低的表达水平和溶解度,四个(C14R,H51P,W68S和A146V)是不溶的。有趣的是,当基于拟议的结核分枝杆菌PncA的三维结构,通过CUPSAT程序预测了这些突变的可能的结构效应时,仅预测了两种高可溶性突变蛋白(Y99D和T135P)是稳定的,并具有良好的扭转角。然而,预示其他显示出低溶解度或沉淀的其他分子将不稳定并/或具有不利的扭转角,表明这些改变可能干扰适当的蛋白质折叠,从而降低或耗尽蛋白质的溶解度。 PncA活性测定表明,两个突变体(G97D和T135P)实际上没有活性,但是其他两个突变体(K48E和Y99D)则显示出野生型活性,表明PncA残基(Cys14,His51,Trp68,Gly97,Thr135和Ala146)对PncA活性和/或正确的蛋白质折叠可能很重要

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