β -内酰胺酶:蛋白质多样性的调查。

Marion S Helfand, Robert A Bonomo
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引用次数: 81

摘要

细菌对β -内酰胺类抗生素和β -内酰胺酶抑制剂的耐药性是一个日益严重的问题,威胁到构成抗生素宝库基石的药物的临床应用。特别是在革兰氏阴性病原体中,结构和机制上新颖的β -内酰胺酶的细化是发生耐药性的最重要手段。对这些药物修饰酶的巨大多样性的认识将有助于理解为什么针对这些独特药物靶点的普遍有效的抑制剂如此之少。本文将对迄今为止所描述的340多种β -内酰胺酶的反应机制和分类方案进行综述。接下来将重点讨论新兴的A类SHV和tem衍生的扩展谱(ESBLs),抑制剂抗性酶,非tem,非SHV A类ESBLs,碳青霉烯酶,B类金属- β -内酰胺酶及其一些新型抑制剂,质粒和染色体编码的C类酶,最后是oxa型oxacillinases, ESBLs。强调了多种耐药机制与β -内酰胺酶产生相关的临床重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beta-lactamases: a survey of protein diversity.

Bacterial resistance to beta-lactam antibiotics and beta-lactamase inhibitors is an ever increasing problem that threatens the clinical utility of drugs that form the cornerstone of the antibiotic armamentarium. Especially among Gram-negative pathogens, elaboration of structurally and mechanistically novel beta-lactamase enzymes is the most important means by which resistance occurs. An appreciation of the tremendous diversity of these drug-modifying enzymes will assist in understanding why so few generally effective inhibitory agents exist for these unique drug targets. This review will give a general background on the reaction mechanisms and classification schemes of the more than 340 beta-lactamase enzymes described to date. A discussion will follow highlighting the emerging Class A SHV and TEM-derived extended-spectrum (ESBLs), and inhibitor-resistant enzymes, non-TEM, non-SHV Class A ESBLs, and carbapenemases, Class B metallo-beta-lactamases and some of their novel inhibitors, plasmid and chromosomally encoded Class C enzymes, and finally, the OXA-type oxacillinases, ESBLs, and carbapenemases of Class D. The clinical importance of multiple resistance mechanisms in conjunction with the production of beta-lactamase enzymes is emphasized.

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