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克服对β-内酰胺酶抑制剂的耐药性:将舒巴坦与针对具有安布勒244位取代的克拉维酸耐药SHV酶的新型抑制剂进行比较。

Overcoming resistance to beta-lactamase inhibitors: comparing sulbactam to novel inhibitors against clavulanate resistant SHV enzymes with substitutions at Ambler position 244.

作者信息

Thomson Jodi M, Distler Anne M, Bonomo Robert A

机构信息

Department of Pharmacology, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106, USA.

出版信息

Biochemistry. 2007 Oct 9;46(40):11361-8. doi: 10.1021/bi700792a. Epub 2007 Sep 12.

Abstract

Amino acid changes at Ambler position R244 in class A TEM and SHV beta-lactamases confer resistance to ampicillin/clavulanate, a beta-lactam/beta-lactamase inhibitor combination used to treat serious infections. To gain a deeper understanding of this resistance phenotype, we investigated the activities of sulbactam and two novel penem beta-lactamase inhibitors with sp2 hybridized C3 carboxylates and bicyclic R1 side chains against a library of SHV beta-lactamase variants at the 244 position. Compared to SHV-1 expressed in Escherichia coli, all 19 R244 variants exhibited increased susceptibility to ampicillin/sulbactam, an important difference compared to ampicillin/clavulanate. Kinetic analyses of SHV-1 and three SHV R244 (-S, -Q, and -L) variants revealed the Ki for sulbactam was significantly elevated for the R244 variants, but the partition ratios, kcat/kinact, were markedly reduced (13 000 --> <or=500). A timed inactivation-mass spectrometry analysis of SHV inhibited by sulbactam showed that SHV-1 beta-lactamase was unmodified at 15 min. A parallel experiment with R244S demonstrated 70 and 88 +/- 3 Da fragments of sulbactam covalently attached to the beta-lactamase. We also observed that the Ki values of penems 1 and 2 were increased for R244 variants compared to those for SHV; however, these inhibitors effectively restored ampicillin susceptibility in vitro. Compared to that of sulbactam, the kcat/kinact values of penems for SHV-1 and R244S were low (<or=2), and unfragmented adducts of each penem were covalently attached to SHV-1 and R244S when studied using the timed inactivation-mass spectrometry method. The R244S mutation affects beta-lactamase inactivators differently, but resistance can be overcome by designing penem inhibitors with strategic chemical properties that improve affinity and impair turnover.

摘要

A类TEM和SHVβ-内酰胺酶中Ambler位置R244处的氨基酸变化赋予了对氨苄西林/克拉维酸的耐药性,氨苄西林/克拉维酸是一种用于治疗严重感染的β-内酰胺/β-内酰胺酶抑制剂组合。为了更深入地了解这种耐药表型,我们研究了舒巴坦以及两种新型碳青霉烯类β-内酰胺酶抑制剂(具有sp2杂化的C3羧酸盐和双环R1侧链)对244位SHVβ-内酰胺酶变体文库的活性。与在大肠杆菌中表达的SHV-1相比,所有19种R244变体对氨苄西林/舒巴坦的敏感性均增加,这与氨苄西林/克拉维酸相比是一个重要差异。对SHV-1和三种SHV R244(-S、-Q和-L)变体的动力学分析表明,舒巴坦对R244变体的Ki显著升高,但分配比kcat/kinact明显降低(13000 -->≤500)。对受舒巴坦抑制的SHV进行的定时失活-质谱分析表明,SHV-1β-内酰胺酶在15分钟时未被修饰。R244S的平行实验表明,有70和88±3 Da的舒巴坦片段共价连接到β-内酰胺酶上。我们还观察到,与SHV相比,碳青霉烯类1和2对R244变体的Ki值增加;然而,这些抑制剂在体外有效地恢复了氨苄西林的敏感性。与舒巴坦相比,碳青霉烯类对SHV-1和R244S的kcat/kinact值较低(≤2),并且在使用定时失活-质谱法研究时,每种碳青霉烯类的未断裂加合物共价连接到SHV-1和R244S上。R244S突变对β-内酰胺酶灭活剂的影响不同,但可以通过设计具有改善亲和力和损害周转率的策略性化学性质的碳青霉烯类抑制剂来克服耐药性。

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