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远距离突变对TEM型β-内酰胺酶中Ω-环构象的影响。

The impact of long-distance mutations on the Ω-loop conformation in TEM type β-lactamases.

作者信息

Shcherbinin Dmitrii, Veselovsky Alexander, Rubtsova Maya, Grigorenko Vitaly, Egorov Alexey

机构信息

Institute of Biomedical Chemistry, Moscow, Russia.

Department of Molecular Technologies, Pirogov Russian National Research Medical University, Moscow, Russia.

出版信息

J Biomol Struct Dyn. 2020 May;38(8):2369-2376. doi: 10.1080/07391102.2019.1634642. Epub 2019 Jul 4.

Abstract

β-lactamases are hydrolytic enzymes primarily responsible for occurrence and abundance of bacteria resistant to β-lactam antibiotics. TEM type β-lactamases are formed by the parent enzyme TEM-1 and more than two hundred of its mutants. Positions for the known amino acid substitutions cover ∼30% of TEM type enzyme's sequence. These substitutions are divided into the key mutations that lead to changes in catalytic properties of β-lactamases, and the secondary ones, which role is poorly understood. In this study, Residue Interaction Networks were constructed from molecular dynamic trajectories of β-lactamase TEM-1 and its variants with two key substitutions, G238S and E240K, and their combinations with secondary ones (M182T and Q39K). Particular attention was paid to a detailed analysis of the interactions that affect conformation and mobility of the Ω-loop, representing a part of the β-lactamase active site. It was shown that key mutations weakened the stability of contact inside the Ω-loop thus increasing its mobility. Combination of three amino acid substitutions, including the 182 residue, leads to the release of R65 promoting its new contacts with N175 and D176. As a result, Ω-loop is fixed on the protein globule. The second distal mutation Q39K prevents changes in spatial position of R65, which lead to the weakening of the effect of M182T substitution and the recovery of the Ω-loop mobility. Thus, the distal secondary mutations are directed for recovering the mobility of enzyme disturbed by the key mutations responsible for expansion of substrate specificity. AbbreviationsESBLextended spectrum beta-lactamasesIRinhibitor resistant beta-lactamasesMDmolecular dynamicsRINresidue interaction networksRMSDroot mean square deviationRMSFroot mean square fluctuations.Communicated by Ramaswamy H. Sarma.

摘要

β-内酰胺酶是水解酶,主要负责对β-内酰胺抗生素耐药细菌的出现和大量存在。TEM型β-内酰胺酶由亲本酶TEM-1及其两百多种突变体形成。已知氨基酸取代的位置覆盖了TEM型酶序列的约30%。这些取代分为导致β-内酰胺酶催化特性改变的关键突变和作用尚不清楚的次要突变。在本研究中,从β-内酰胺酶TEM-1及其具有两个关键取代G238S和E240K以及它们与次要取代(M182T和Q39K)组合的变体的分子动力学轨迹构建了残基相互作用网络。特别关注了对影响Ω-环构象和流动性的相互作用的详细分析,Ω-环是β-内酰胺酶活性位点的一部分。结果表明,关键突变削弱了Ω-环内部接触的稳定性,从而增加了其流动性。包括182位残基在内的三个氨基酸取代的组合导致R65的释放,促进其与N175和D176的新接触。结果,Ω-环固定在蛋白质球状体上。第二个远端突变Q39K阻止了R65空间位置的变化,这导致M182T取代的效果减弱和Ω-环流动性的恢复。因此,远端次要突变旨在恢复被负责底物特异性扩展的关键突变干扰的酶的流动性。

缩写

ESBL 超广谱β-内酰胺酶

IR 耐抑制剂β-内酰胺酶

MD 分子动力学

RIN 残基相互作用网络

RMSD 均方根偏差

RMSF 均方根波动

由Ramaswamy H. Sarma传达

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