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质粒编码的C类β-内酰胺酶CMY-10扩展底物谱的结构基础

Structural basis for the extended substrate spectrum of CMY-10, a plasmid-encoded class C beta-lactamase.

作者信息

Kim Jae Young, Jung Ha Il, An Young Jun, Lee Jung Hun, Kim So Jung, Jeong Seok Hoon, Lee Kye Joon, Suh Pann-Ghill, Lee Heung-Soo, Lee Sang Hee, Cha Sun-Shin

机构信息

School of Biological Sciences, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Mol Microbiol. 2006 May;60(4):907-16. doi: 10.1111/j.1365-2958.2006.05146.x.

Abstract

The emergence and dissemination of extended-spectrum (ES) beta-lactamases induce therapeutic failure and a lack of eradication of clinical isolates even by third-generation beta-lactam antibiotics like ceftazidime. CMY-10 is a plasmid-encoded class C beta-lactamase with a wide spectrum of substrates. Unlike the well-studied class C ES beta-lactamase from Enterobacter cloacae GC1, the Omega-loop does not affect the active site conformation and the catalytic activity of CMY-10. Instead, a three-amino-acid deletion in the R2-loop appears to be responsible for the ES activity of CMY-10. According to the crystal structure solved at 1.55 A resolution, the deletion significantly widens the R2 active site, which accommodates the R2 side-chains of beta-lactam antibiotics. This observation led us to demonstrate the hydrolysing activity of CMY-10 towards imipenem with a long R2 substituent. The forced mutational analyses of P99 beta-lactamase reveal that the introduction of deletion mutations into the R2-loop is able to extend the substrate spectrum of class C non-ES beta-lactamases, which is compatible with the isolation of natural class C ES enzymes harbouring deletion mutations in the R2-loop. Consequently, the opening of the R2 active site by the deletion of some residues in the R2-loop can be considered as an operative molecular strategy of class C beta-lactamases to extend their substrate spectrum.

摘要

超广谱(ES)β-内酰胺酶的出现和传播导致治疗失败,即使使用头孢他啶等第三代β-内酰胺抗生素也无法根除临床分离株。CMY-10是一种由质粒编码的C类β-内酰胺酶,具有广泛的底物谱。与已被充分研究的阴沟肠杆菌GC1的C类ESβ-内酰胺酶不同,Ω环不影响CMY-10的活性位点构象和催化活性。相反,R2环中的三个氨基酸缺失似乎是CMY-10具有ES活性的原因。根据以1.55 Å分辨率解析的晶体结构,该缺失显著拓宽了R2活性位点,该位点可容纳β-内酰胺抗生素的R2侧链。这一观察结果使我们证明了CMY-10对具有长R2取代基的亚胺培南的水解活性。对P99β-内酰胺酶的强制突变分析表明,在R2环中引入缺失突变能够扩展C类非ESβ-内酰胺酶的底物谱,这与分离出在R2环中具有缺失突变的天然C类ES酶是一致的。因此,通过R2环中某些残基的缺失来打开R2活性位点可被视为C类β-内酰胺酶扩展其底物谱的一种有效分子策略。

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