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PER-2β-内酰胺酶中Arg220和Thr237位点突变对其构象、活性及抑制剂敏感性的影响

Impact of Mutations at Arg220 and Thr237 in PER-2 β-Lactamase on Conformation, Activity, and Susceptibility to Inhibitors.

作者信息

Ruggiero Melina, Curto Lucrecia, Brunetti Florencia, Sauvage Eric, Galleni Moreno, Power Pablo, Gutkind Gabriel

机构信息

Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Departamento de Microbiología, Inmunología y Biotecnología, Cátedra de Microbiología, Buenos Aires, Argentina.

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

出版信息

Antimicrob Agents Chemother. 2017 May 24;61(6). doi: 10.1128/AAC.02193-16. Print 2017 Jun.

Abstract

PER-2 accounts for up to 10% of oxyimino-cephalosporin resistance in and in Argentina and hydrolyzes both cefotaxime and ceftazidime with high catalytic efficiencies (/ ). Through crystallographic analyses, we recently proposed the existence of a hydrogen bond network connecting Ser70-Gln69-oxyanion water-Thr237-Arg220 that might be important for the activity and inhibition of the enzyme. Mutations at Arg244 in most class A β-lactamases (such as TEM and SHV) reduce susceptibility to mechanism-based inactivators, and Arg220 in PER β-lactamases is equivalent to Arg244. Alterations in the hydrogen bond network of the active site in PER-2, through modifications in key residues such as Arg220 and (to a much lesser extent) Thr237, dramatically impact the overall susceptibility to inactivation, with up to ∼300- and 500-fold reductions in the rate constant of inactivation ()/ values for clavulanic acid and tazobactam, respectively. Hydrolysis on cephalosporins and aztreonam was also affected, although to different extents compared to with wild-type PER-2; for cefepime, only an Arg220Gly mutation resulted in a strong reduction in the catalytic efficiency. Mutations at Arg220 entail modifications in the catalytic activity of PER-2 and probably local perturbations in the protein, but not global conformational changes. Therefore, the apparent structural stability of the mutants suggests that these enzymes could be possibly selected .

摘要

PER-2在阿根廷导致高达10%的氧亚氨基头孢菌素耐药,并且能高效水解头孢噻肟和头孢他啶(催化效率/kcat/Km)。通过晶体学分析,我们最近提出存在一个连接Ser70-Gln69-氧负离子水-Thr237-Arg220的氢键网络,这可能对该酶的活性和抑制作用很重要。大多数A类β-内酰胺酶(如TEM和SHV)中Arg244的突变会降低对基于机制的失活剂的敏感性,而PERβ-内酰胺酶中的Arg220相当于Arg244。通过对关键残基如Arg220和(在较小程度上)Thr237的修饰,PER-2活性位点氢键网络的改变极大地影响了整体失活敏感性,克拉维酸和他唑巴坦的失活速率常数(/)值分别降低了约300倍和500倍。头孢菌素和氨曲南的水解也受到影响,尽管与野生型PER-2相比程度不同;对于头孢吡肟,只有Arg220Gly突变导致催化效率大幅降低。Arg220的突变导致PER-2催化活性的改变以及蛋白质可能的局部扰动,但没有全局构象变化。因此,突变体明显的结构稳定性表明这些酶可能会被选择。

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