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The highly conserved domain of RND multidrug efflux pumps in pathogenic Gram-negative bacteria

机译:致病革兰阴性细菌中RND多药泵的高度保守领域

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摘要

RND (Resistance-Nodulation-Division) family transporters have a vital role in both intrinsic and acquired multi-drug resistance in Gram-negative bacteria. It is important to find a conserved domain in the RND family between different pathogenic bacteria for diagnostic and therapeutic purpose. Total sequences of three-component system RND efflux pumps were retrieved from NCBI nucleotide and protein database and were subjected to conservation and variation analysis using the multiple sequence alignment feature of the CLC workbench. The phylogenetic tree for main transporters was drawn and the three-dimensional structure was also evaluated. From the sequence conservation analysis, highly conserved residues with 282 base pair (94 amino acid) long were identified. The location of the highly conserved domain is positioned in the domain 1 crystallographic structure of AcrB Escherichia coli and MexB Pseudomonas aeruginosa. The main transporter component phylogenetic tree shows the clusters of different genotypes and their evolutionary association. Each of three components of RND proteins is crucial for drug efflux, and the absence of even one component makes the entire complex totally nonfunctional. Therefore, this highly conserved region can be used to disable the RND multidrug efflux pumps. In addition, this highly conserved can also be used for diagnostic aspects.
机译:RND(抗性染色划分)家族转运蛋白在革兰氏阴性细菌中的内在和获得的多药物抗性中具有至关重要的作用。在不同致病细菌之间寻找诊断和治疗目的的RND系列中的保守域是重要的。从NCBI核苷酸和蛋白质数据库检索三组分系统RND流出泵的总序列,并使用CLC工作台的多个序列对准特征进行守恒和变化分析。拉伸主要转运蛋白的系统发育树,还评估了三维结构。从序列保护分析,鉴定了具有282个碱基对(94个氨基酸)的高度保守的残留物。高度保守的结构域的位置定位在ACRB大肠杆菌和MEXB假单胞菌铜绿假单胞菌的结构域1晶体结构中。主要转运蛋白组分系统发育树显示不同基因型及其进化结合的簇。 RND蛋白的三种组分中的每种组分对于药物流出至关重要,并且甚至没有一种组分的不存在使整个复杂的完全不官能。因此,这种高度保守的区域可用于禁用RND MultiDrug Efflux泵。此外,这种高度保守的也可用于诊断方面。

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