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Computational analysis of pathogen-borne metallo β-lactamases reveals discriminating structural features between B1 types

机译:对病原体携带的金属β-内酰胺酶的计算分析揭示了B1型之间的区分结构特征

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Background Genes conferring antibiotic resistance to groups of bacterial pathogens are cause for considerable concern, as many once-reliable antibiotics continue to see a reduction in efficacy. The recent discovery of the metallo β-lactamase blaNDM-1 gene, which appears to grant antibiotic resistance to a variety of Enterobacteriaceae via a mobile plasmid, is one example of this distressing trend. The following work describes a computational analysis of pathogen-borne MBLs that focuses on the structural aspects of characterized proteins. Results Using both sequence and structural analyses, we examine residues and structural features specific to various pathogen-borne MBL types. This analysis identifies a linker region within MBL-like folds that may act as a discriminating structural feature between these proteins, and specifically resistance-associated acquirable MBLs. Recently released crystal structures of the newly emerged NDM-1 protein were aligned against related MBL structures using a variety of global and local structural alignment methods, and the overall fold conformation is examined for structural conservation. Conservation appears to be present in most areas of the protein, yet is strikingly absent within a linker region, making NDM-1 unique with respect to a linker-based classification scheme. Variability analysis of the NDM-1 crystal structure highlights unique residues in key regions as well as identifying several characteristics shared with other transferable MBLs. Conclusions A discriminating linker region identified in MBL proteins is highlighted and examined in the context of NDM-1 and primarily three other MBL types: IMP-1, VIM-2 and ccrA. The presence of an unusual linker region variant and uncommon amino acid composition at specific structurally important sites may help to explain the unusually broad kinetic profile of NDM-1 and may aid in directing research attention to areas of this protein, and possibly other MBLs, that may be targeted for inactivation or attenuation of enzymatic activity.
机译:背景技术赋予许多细菌病原体抗药性的基因引起了人们的极大关注,因为许多曾经可靠的抗生素继续发现疗效下降。金属β-内酰胺酶blaNDM-1基因的最新发现,似乎是通过移动质粒赋予多种肠杆菌科细菌以抗生素抗性,是这种令人困扰的趋势的一个例子。以下工作描述了病原体携带的MBL的计算分析,重点是特征蛋白的结构方面。结果我们使用序列和结构分析,检查了各种病原体携带的MBL类型特有的残基和结构特征。该分析鉴定了MBL样折叠内的接头区域,其可以充当这些蛋白质之间的区别结构特征,特别是与抗性相关的可获取的MBL之间的区别。使用各种全局和局部结构比对方法,将新近出现的NDM-1蛋白的最近释放的晶体结构与相关的MBL结构进行比对,并检查整体折叠构象以保护结构。蛋白质的大多数区域似乎都存在保守性,但在连接子区域内却非常缺乏保守性,这使得NDM-1相对于基于连接子的分类方案而言是独一无二的。 NDM-1晶体结构的变异性分析突出了关键区域中的独特残基,并确定了与其他可转移MBL共有的几个特征。结论在NDM-1以及主要三种其他MBL类型(IMP-1,VIM-2和ccrA)的背景下,突出显示并检查了MBL蛋白中鉴定的区分接头区域。在特定的结构上重要的位点存在异常的接头区域变体和不常见的氨基酸组成可能有助于解释NDM-1异常广泛的动力学概况,并可能有助于将研究重点转移到该蛋白质以及其他MBL的区域,从而可以靶向用于酶活性的失活或减弱。

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