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SHV-1β-内酰胺酶中氨基酸残基的诱变:Gly238Ser在对青霉素和头孢菌素耐药性中的首要作用。

Mutagenesis of amino acid residues in the SHV-1 beta-lactamase: the premier role of Gly238Ser in penicillin and cephalosporin resistance.

作者信息

Hujer A M, Hujer K M, Bonomo R A

机构信息

Research Service, Louis Stokes Veterans Affairs Medical Center, OH 44106, USA.

出版信息

Biochim Biophys Acta. 2001 May 5;1547(1):37-50. doi: 10.1016/s0167-4838(01)00164-9.

Abstract

The recent availability of the SHV-1 beta-lactamase crystal structure provides a framework for the understanding of the functional role of amino acid residues in this enzyme. To that end, we have constructed by site-directed mutagenesis 18 variants of the SHV beta-lactamase: an extended spectrum group: Gly238Ser, Gly238Ser-Glu240Lys, Asp104Lys-Gly238Ser, Asp104Lys-Thr235Ser-Gly238Ser, Asp179Asn, Arg164His, and Arg164Ser; an inhibitor resistant group: Arg244Ser, Met69Ile, Met69Leu, and Ser130Gly; mutants that are synergistic with those that confer resistance to oxyimino-cephalosporins: Asp104Glu, Asp104Lys, Glu240Lys, and Glu240Gln; and structurally conserved mutants: Thr235Ser, Thr235Ala and Glu166Ala. Among the extended spectrum group the combination of high-level ampicillin and cephalosporin resistance was demonstrated in the Escherichia coli DH10B strains possessing the Gly238Ser mutation: Gly238Ser, Gly238Ser-Glu240Lys, Asp104Lys-Gly238Ser, and Asp104Lys-Thr235Ser-Gly238Ser. Of the inhibitor resistant group, the Ser130Gly mutant was the most resistant to ampicillin/clavulanate. Using a polyclonal anti-SHV antibody, we assayed steady state protein expression levels of the SHV beta-lactamase variants. Mutants with the Gly238Ser substitution were among the most highly expressed. The Gly238Ser substitution resulted in an improved relative k(cat)/K(m) value for cephaloridine and oxyimino-cephalosporins compared to SHV-1 and Met69Ile. In our comparative survey, the Gly238Ser and extended spectrum beta-lactamase variants containing this substitution exhibited the greatest substrate versatility against penicillins and cephalosporins and greatest protein expression. This defines a unique role of Gly238Ser in broad-spectrum beta-lactam resistance in this family of class A beta-lactamases.

摘要

SHV-1β-内酰胺酶晶体结构的近期可得性为理解该酶中氨基酸残基的功能作用提供了一个框架。为此,我们通过定点诱变构建了18种SHVβ-内酰胺酶变体:一个超广谱组:Gly238Ser、Gly238Ser-Glu240Lys、Asp104Lys-Gly238Ser、Asp104Lys-Thr235Ser-Gly238Ser、Asp179Asn、Arg164His和Arg164Ser;一个抑制剂抗性组:Arg244Ser、Met69Ile、Met69Leu和Ser130Gly;与对氧亚氨基头孢菌素具有抗性的变体具有协同作用的突变体:Asp104Glu、Asp104Lys、Glu240Lys和Glu240Gln;以及结构保守突变体:Thr235Ser、Thr235Ala和Glu166Ala。在超广谱组中,在具有Gly238Ser突变的大肠杆菌DH10B菌株中证实了高水平氨苄青霉素和头孢菌素抗性的组合:Gly238Ser、Gly238Ser-Glu240Lys、Asp104Lys-Gly238Ser和Asp104Lys-Thr235Ser-Gly238Ser。在抑制剂抗性组中,Ser130Gly突变体对氨苄青霉素/克拉维酸的抗性最强。使用多克隆抗SHV抗体,我们测定了SHVβ-内酰胺酶变体的稳态蛋白表达水平。具有Gly238Ser取代的突变体是表达水平最高的之一。与SHV-1和Met69Ile相比,Gly238Ser取代导致头孢菌素和氧亚氨基头孢菌素的相对k(cat)/K(m)值提高。在我们的比较研究中,Gly238Ser和含有该取代的超广谱β-内酰胺酶变体对青霉素和头孢菌素表现出最大的底物通用性以及最高的蛋白表达。这定义了Gly238Ser在A类β-内酰胺酶家族的广谱β-内酰胺抗性中的独特作用。

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