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首页> 外文期刊>ChemMedChem >Charge is Major Determinant of Activation of the Ligand-Responsive Multidrug Resistance Gene Regulator, BmrR
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Charge is Major Determinant of Activation of the Ligand-Responsive Multidrug Resistance Gene Regulator, BmrR

机译:电荷是配体反应性多药耐药基因调节剂BmrR激活的主要决定因素。

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摘要

A medium-throughput approach (80+ compounds) to investigate allosteric transcriptional control in the multidrug resistance gene regulator BmrR, with cations, zwitterions, uncharged compounds and anions, is described. Even at the allosteric level, BmrR is quite promiscuous with regard to molecular shape and structure, but it is sensitive to molecular charge. A role for charge is further supported by differences in the activation properties of structurally similar ligands displaying variable charge properties as well as differences in activation by zwitterions and uncharged ligands, which show similar binding affinities. A comparison of allosteric selectivity with the distribution of differently charged ligands in bacterial cellular environments suggests that the selectivity of charge is a major factor in discrimination of xenobiotics, and native biological compounds and metabolites. Interestingly, in eukaryotic cells, the selectivity of cationic ligands might be a protective mechanism against chemical agents that act in a promiscuous fashion.
机译:描述了一种中通量方法(80多种化合物),用于研究多药耐药基因调节剂BmrR中的变构转录控制,以及阳离子,两性离子,不带电荷的化合物和阴离子。即使在变构水平上,BmrR在分子形状和结构上也很混杂,但对分子电荷敏感。电荷的作用进一步由结构相似的显示可变电荷性质的配体的激活特性的差异以及两性离子和不带电荷的配体的激活差异(它们显示出相似的结合亲和力)来支持。将变构选择性与细菌细胞环境中带不同电荷的配体的分布进行比较表明,电荷的选择性是区分异种生物,天然生物化合物和代谢产物的主要因素。有趣的是,在真核细胞中,阳离子配体的选择性可能是针对以混杂方式起作用的化学试剂的保护机制。

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