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甘氨酸238到丝氨酸的替换改变了SHV A类β-内酰胺酶的底物特异性。

Gly-238-Ser substitution changes the substrate specificity of the SHV class A beta-lactamases.

作者信息

Lee K Y, Hopkins J D, O'Brien T F, Syvanen M

机构信息

Department of Medical Microbiology and Immunology, School of Medicine, University of California, Davis 95616.

出版信息

Proteins. 1991;11(1):45-51. doi: 10.1002/prot.340110106.

Abstract

The SHV-type beta-lactamase SHV-2A is related to SHV-1 by a Gly-238-Ser replacement. Strains carrying SHV-2A are resistant to the third generation cephems cefotaxime and ceftizoxime, whereas those that carry SHV-1 are sensitive to these drugs. We present a kinetic analysis of a SHV-1 and SHV-2A enzymes, with the goal of gaining insight into the role of residue 238 in hydrolyzing cefotaxime and ceftizoxime. SHV-2A shows altered kinetic properties for a number of other cephems that also have heterocyclic side chains at the amino position of the 7-aminocephalosporanic acid nucleus (R1 side chain), including a significantly higher kcat/Km than does SHV-1 for cephaloridine, cephalothin, and cefotiam. Two cephems with straight chain R1 substitutions, cephalosporin C and cephacetrile, are not hydrolyzed more efficiently by SHV-2A. These results indicate that the Ser-238-Gly substitution increases the affinity toward cephems with a heterocyclic ring in the R1 side chain. In addition, the data for ampicillin and benzylpenicillin show that addition of a nitrogen to the second carbon of the R1 side chain of a penem results in a lower kcat/Km for SHV-2A relative to SHV-1. These data strongly suggest that the previously proposed hydrogen bond formation between Ser-238 and the second carbon nitrogen of cefotaxime is not an important factor in hydrolysis by SHV-2A. We propose that the Gly-238 to Ser-238 replacement in SHV-2A has altered the hydrophobic pocket so that it can better accommodate cephems with bulky R1 side chains.

摘要

SHV型β-内酰胺酶SHV-2A与SHV-1的区别在于第238位氨基酸由甘氨酸替换为丝氨酸。携带SHV-2A的菌株对第三代头孢菌素头孢噻肟和头孢唑肟耐药,而携带SHV-1的菌株对这些药物敏感。我们对SHV-1和SHV-2A酶进行了动力学分析,目的是深入了解238位氨基酸残基在水解头孢噻肟和头孢唑肟中的作用。SHV-2A对其他一些头孢菌素也表现出改变的动力学特性,这些头孢菌素在7-氨基头孢烷酸核(R1侧链)的氨基位置也有杂环侧链,包括相对于SHV-1,SHV-2A对头孢立定、头孢噻吩和头孢替安的kcat/Km显著更高。两个具有直链R1取代基的头孢菌素,头孢菌素C和头孢乙腈,不会被SHV-2A更有效地水解。这些结果表明,Ser-238-Gly替换增加了对R1侧链带有杂环的头孢菌素的亲和力。此外,氨苄西林和苄青霉素的数据表明,在青霉烯的R1侧链的第二个碳原子上添加一个氮原子会导致SHV-2A相对于SHV-1的kcat/Km降低。这些数据强烈表明,先前提出的Ser-238与头孢噻肟的第二个碳氮之间形成的氢键不是SHV-2A水解的重要因素。我们提出,SHV-2A中Gly-238到Ser-238的替换改变了疏水口袋,使其能够更好地容纳具有庞大R1侧链的头孢菌素。

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