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大肠杆菌青霉素结合蛋白2转肽酶结构域的活性位点残基:与A类β-内酰胺酶催化机制的相似性

Active-site residues of the transpeptidase domain of penicillin-binding protein 2 from Escherichia coli: similarity in catalytic mechanism to class A beta-lactamases.

作者信息

Adachi H, Ishiguro M, Imajoh S, Ohta T, Matsuzawa H

机构信息

Department of Agricultural Chemistry, University of Tokyo, Japan.

出版信息

Biochemistry. 1992 Jan 21;31(2):430-7. doi: 10.1021/bi00117a018.

Abstract

By means of amino acid sequence alignment with class A beta-lactamases, the residues essential for the catalytic activity of the peptidoglycan transpeptidase of penicillin-binding protein 2 (PBP2) have been predicted to be Lys333, Asp447, and Lys544, in addition to the acylation site residue for the acyl-enzyme mechanism, Ser330. Accordingly, these residues were replaced by site-directed mutagenesis, and the resultant mutants were examined as to penicillin-binding activity and genetic complementation, which represent only the acylation step and the total reaction during transpeptidation, respectively. All the mutants at position 333 showed the complete loss of both the binding and complementation activities. Most of the mutants at position 447 retained the binding activity but lost the complementation activity, the exception being the D447E mutant, which retained both. The binding rates for various penicillins of the D447N mutant, which had lost the complementation activity, were almost identical to those of the wild type. The binding of the mutants at position 544 tended to require a higher penicillin concentration, and that of the K544H mutant required a lower pH. When the roles of the counterpart residues, Lys73, Glu166, and Lys234, in class A beta-lactamases were considered, the results suggested that Lys333 and Asp447 are essential for the acylation and acyl-transfer steps, respectively, and that Lys544 stabilizes the Michaelis complex through its side-chain positive charge.

摘要

通过与A类β-内酰胺酶进行氨基酸序列比对,除了酰基酶机制的酰化位点残基Ser330外,已预测青霉素结合蛋白2(PBP2)的肽聚糖转肽酶催化活性所必需的残基为Lys333、Asp447和Lys544。因此,通过定点诱变替换这些残基,并对所得突变体进行青霉素结合活性和遗传互补性检测,这两者分别仅代表转肽过程中的酰化步骤和总反应。333位的所有突变体均显示结合活性和互补活性完全丧失。447位的大多数突变体保留了结合活性但丧失了互补活性,例外的是D447E突变体,它同时保留了这两种活性。丧失互补活性的D447N突变体对各种青霉素的结合率与野生型几乎相同。544位突变体的结合往往需要更高的青霉素浓度,而K544H突变体的结合则需要更低的pH值。考虑到A类β-内酰胺酶中对应残基Lys73、Glu166和Lys234的作用,结果表明Lys333和Asp447分别对酰化步骤和酰基转移步骤至关重要,并且Lys544通过其侧链正电荷稳定米氏复合物。

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