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组氨酸224改变了R2药物结合位点,苯丙氨酸218影响金属β-内酰胺酶VIM-7的催化效率。

His224 alters the R2 drug binding site and Phe218 influences the catalytic efficiency of the metallo-β-lactamase VIM-7.

作者信息

Leiros Hanna-Kirsti S, Skagseth Susann, Edvardsen Kine Susann Waade, Lorentzen Marit Sjo, Bjerga Gro Elin Kjæreng, Leiros Ingar, Samuelsen Ørjan

机构信息

The Norwegian Structural Biology Centre (NorStruct), Department of Chemistry, UiT The Arctic University of Norway, Tromsø, Norway

The Norwegian Structural Biology Centre (NorStruct), Department of Chemistry, UiT The Arctic University of Norway, Tromsø, Norway.

出版信息

Antimicrob Agents Chemother. 2014 Aug;58(8):4826-36. doi: 10.1128/AAC.02735-13. Epub 2014 Jun 9.

Abstract

Metallo-β-lactamases (MBLs) are the causative mechanism for resistance to β-lactams, including carbapenems, in many Gram-negative pathogenic bacteria. One important family of MBLs is the Verona integron-encoded MBLs (VIM). In this study, the importance of residues Asp120, Phe218, and His224 in the most divergent VIM variant, VIM-7, was investigated to better understand the roles of these residues in VIM enzymes through mutations, enzyme kinetics, crystal structures, thermostability, and docking experiments. The tVIM-7-D120A mutant with a tobacco etch virus (TEV) cleavage site was enzymatically inactive, and its structure showed the presence of only the Zn1 ion. The mutant was less thermostable, with a melting temperature (T(m)) of 48.5°C, compared to 55.3 °C for the wild-type tVIM-7. In the F218Y mutant, a hydrogen bonding cluster was established involving residues Asn70, Asp84, and Arg121. The tVIM-7-F218Y mutant had enhanced activity compared to wild-type tVIM-7, and a slightly higher Tm (57.1 °C) was observed, most likely due to the hydrogen bonding cluster. Furthermore, the introduction of two additional hydrogen bonds adjacent to the active site in the tVIM-7-H224Y mutant gave a higher thermostability (T(m), 62.9 °C) and increased enzymatic activity compared to those of the wild-type tVIM-7. Docking of ceftazidime in to the active site of tVIM-7, tVIM-7-H224Y, and VIM-7-F218Y revealed that the side-chain conformations of residue 224 and Arg228 in the L3 loop and Tyr67 in the L1 loop all influence possible substrate binding conformations. In conclusion, the residue composition of the L3 loop, as shown with the single H224Y mutation, is important for activity particularly toward the positively charged cephalosporins like cefepime and ceftazidime.

摘要

金属β-内酰胺酶(MBLs)是许多革兰氏阴性病原菌对β-内酰胺类抗生素(包括碳青霉烯类)产生耐药性的致病机制。MBLs的一个重要家族是维罗纳整合子编码的MBLs(VIM)。在本研究中,对最具差异的VIM变体VIM-7中的天冬氨酸120(Asp120)、苯丙氨酸218(Phe218)和组氨酸224(His224)残基的重要性进行了研究,以通过突变、酶动力学、晶体结构、热稳定性和对接实验更好地了解这些残基在VIM酶中的作用。带有烟草蚀纹病毒(TEV)切割位点的tVIM-7-D120A突变体没有酶活性,其结构显示仅存在锌1离子。该突变体的热稳定性较差,其解链温度(T(m))为48.5°C,而野生型tVIM-7的解链温度为55.3°C。在F218Y突变体中,形成了一个涉及天冬酰胺70(Asn70)、天冬氨酸84(Asp84)和精氨酸121(Arg121)残基的氢键簇。与野生型tVIM-7相比,tVIM-7-F218Y突变体的活性增强,并观察到略高的解链温度(57.1°C),这很可能是由于氢键簇的形成。此外,在tVIM-7-H224Y突变体的活性位点附近引入另外两个氢键,使其热稳定性更高(T(m)为62.9°C),与野生型tVIM-7相比,酶活性也有所增加。将头孢他啶对接至tVIM-7、tVIM-7-H224Y和VIM-7-F218Y的活性位点,结果显示L3环中224位残基和精氨酸228(Arg228)以及L1环中酪氨酸67(Tyr67)的侧链构象均影响可能的底物结合构象。总之,如单一H224Y突变所示,L3环的残基组成对于活性,特别是对像头孢吡肟和头孢他啶这样带正电荷的头孢菌素的活性很重要。

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