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Probing the Effect of the Non-Active-Site Mutation Y229W in New Delhi Metallo-β-lactamase-1 by Site-Directed Mutagenesis Kinetic Studies and Molecular Dynamics Simulations

机译:通过定点诱变动力学研究和分子动力学模拟探索新德里金属β-内酰胺酶-1中非活性位点突变Y229W的影响

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摘要

New Delhi metallo-β-lactmase-1 (NDM-1) has attracted extensive attention for its high catalytic activities of hydrolyzing almost all β-lactam antibiotics. NDM-1 shows relatively higher similarity to subclass B1 metallo-β-lactmases (MβLs), but its residue at position 229 is identical to that of B2/B3 MβLs, which is a Tyr instead of a B1-MβL-conserved Trp. To elucidate the possible role of Y229 in the bioactivity of NDM-1, we performed mutagenesis study and molecular dynamics (MD) simulations. Although residue Y229 is spatially distant from the active site and not contacting directly with the substrate or zinc ions, the Y229W mutant was found to have higher kcat and Km values than those of wild-type NDM-1, resulting in 1∼7 fold increases in kcat/Km values against tested antibiotics. In addition, our MD simulations illustrated the enhanced flexibility of Loop 2 upon Y229W mutation, which could increase the kinetics of both substrate entrance (kon) and product egress (koff). The enhanced flexibility of Loop 2 might allow the enzyme to adjust the geometry of its active site to accommodate substrates with different structures, broadening its substrate spectrum. This study indicated the possible role of the residue at position 229 in the evolution of NDM-1.
机译:新德里金属β-内酰胺酶-1(NDM-1)因其水解几乎所有β-内酰胺类抗生素的高催化活性而受到广泛关注。 NDM-1与亚类B1金属-β-内酯酶(MβLs)具有相对较高的相似性,但其在229位的残基与B2 / B3MβLs相同,后者是Tyr而不是B1-MβL保守的Trp。为了阐明Y229在NDM-1的生物活性中的可能作用,我们进行了诱变研究和分子动力学(MD)模拟。尽管残基Y229在空间上远离活性位点并且不直接与底物或锌离子接触,但发现Y229W突变体的kcat和Km值比野生型NDM-1高,其增加了1到7倍相对于测试抗生素的kcat / Km值。另外,我们的MD模拟表明Y229W突变后Loop 2的柔性增强,这可以增加底物入口(kon)和产物流出(koff)的动力学。 Loop 2的增强的柔韧性可能允许酶调节其活性位点的几何形状,以适应具有不同结构的底物,从而扩大其底物谱。这项研究表明了229位残基在NDM-1进化中的可能作用。

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