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基于结构的β-内酰胺酶抑制剂设计。1. 桥连单环β-内酰胺类化合物的合成与评价。

Structure-based design of beta-lactamase inhibitors. 1. Synthesis and evaluation of bridged monobactams.

作者信息

Heinze-Krauss I, Angehrn P, Charnas R L, Gubernator K, Gutknecht E M, Hubschwerlen C, Kania M, Oefner C, Page M G, Sogabe S, Specklin J L, Winkler F

机构信息

Preclinical Research, F. Hoffmann-La Roche Ltd., CH-4070 Basle, Switzerland.

出版信息

J Med Chem. 1998 Oct 8;41(21):3961-71. doi: 10.1021/jm980023c.

Abstract

Bridged monobactams are novel, potent, mechanism-based inhibitors of class C beta-lactamases, designed using X-ray crystal structures of the enzymes. They stabilize the acyl-enzyme intermediate by blocking access of water to the enzyme-inhibitor ester bond. Bridged monobactams are selective class C beta-lactamase inhibitors, with half-inhibition constants as low as 10 nM, and are less effective against class A and class B enzymes (half-inhibition constants > 100 microM) because of the different hydrolysis mechanisms in these classes of beta-lactamases. The stability of the acyl-enzyme complexes formed with class C beta-lactamases (half-lives up to 2 days were observed) enabled determination of their crystal structures. The conformation of the inhibitor moiety was close to that predicted by molecular modeling, confirming a simple reaction mechanism, unlike those of known beta-lactamase inhibitors such as clavulanic acid and penam sulfones, which involve secondary rearrangements. Synergy between the bridged monobactams and beta-lactamase-labile antibiotics could be observed when such combinations were tested against strains of Enterobacteriaceae that produce large amounts of class C beta-lactamases. The minimal inhibitory concentration of the antibiotic of more than 64 mg/L could be decreased to 0.25 mg/L in a 1:4 combination with the inhibitor.

摘要

桥连单环β-内酰胺类是新型、强效的基于机制的C类β-内酰胺酶抑制剂,是利用这些酶的X射线晶体结构设计而成。它们通过阻止水接近酶-抑制剂酯键来稳定酰基酶中间体。桥连单环β-内酰胺类是选择性C类β-内酰胺酶抑制剂,其半数抑制常数低至10 nM,而对A类和B类酶的抑制效果较差(半数抑制常数>100 μM),因为这些类别的β-内酰胺酶水解机制不同。与C类β-内酰胺酶形成的酰基酶复合物的稳定性(观察到半衰期长达2天)使得能够确定其晶体结构。抑制剂部分的构象与分子模拟预测的构象接近,证实了一种简单的反应机制,这与已知的β-内酰胺酶抑制剂如克拉维酸和青霉烷砜不同,后者涉及二级重排。当针对产生大量C类β-内酰胺酶的肠杆菌科菌株测试此类组合时,可以观察到桥连单环β-内酰胺类与对β-内酰胺酶不稳定的抗生素之间的协同作用。在与抑制剂1:4的组合中,抗生素最低抑菌浓度大于64 mg/L可降至0.25 mg/L。

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