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结核分枝杆菌转录调节因子 Rv3066 的结构与功能分析。

Structural and functional analysis of the transcriptional regulator Rv3066 of Mycobacterium tuberculosis.

机构信息

Department of Chemistry, College of Veterinary Medicine, Iowa State University, Ames, IA 50011, USA.

出版信息

Nucleic Acids Res. 2012 Oct;40(18):9340-55. doi: 10.1093/nar/gks677. Epub 2012 Jul 19.

Abstract

The Mmr multidrug efflux pump recognizes and actively extrudes a broad range of antimicrobial agents, and promotes the intrinsic resistance to these antimicrobials in Mycobacterium tuberculosis. The expression of Mmr is controlled by the TetR-like transcriptional regulator Rv3066, whose open reading frame is located downstream of the mmr operon. To understand the structural basis of Rv3066 regulation, we have determined the crystal structures of Rv3066, both in the absence and presence of bound ethidium, revealing an asymmetric homodimeric two-domain molecule with an entirely helical architecture. The structures underscore the flexibility and plasticity of the regulator essential for multidrug recognition. Comparison of the apo-Rv3066 and Rv3066-ethidium crystal structures suggests that the conformational changes leading to drug-mediated derepression is primarily due to a rigid body rotational motion within the dimer interface of the regulator. The Rv3066 regulator creates a multidrug-binding pocket, which contains five aromatic residues. The bound ethidium is found buried within the multidrug-binding site, where extensive aromatic stacking interactions seemingly govern the binding. In vitro studies reveal that the dimeric Rv3066 regulator binds to a 14-bp palindromic inverted repeat sequence in the nanomolar range. These findings provide new insight into the mechanisms of ligand binding and Rv3066 regulation.

摘要

Mmr 多药外排泵识别并主动排出广泛的抗菌药物,并促进结核分枝杆菌对这些抗菌药物的固有耐药性。Mmr 的表达受 TetR 样转录调节剂 Rv3066 控制,其开放阅读框位于 mmr 操纵子的下游。为了了解 Rv3066 调节的结构基础,我们确定了 Rv3066 的晶体结构,分别在没有和存在结合的乙锭的情况下,揭示了一种不对称的同二聚体双结构域分子,具有完全的螺旋结构。这些结构强调了调节剂对于多药识别的灵活性和可塑性。apo-Rv3066 和 Rv3066-ethidium 晶体结构的比较表明,导致药物介导去阻遏的构象变化主要是由于调节剂二聚体界面内的刚性体旋转运动。Rv3066 调节剂创建了一个多药结合口袋,其中包含五个芳香族残基。结合的乙锭位于多药结合位点内,其中广泛的芳香族堆积相互作用似乎控制着结合。体外研究表明,二聚体 Rv3066 调节剂以纳摩尔范围结合到 14 个碱基对的回文重复序列上。这些发现为配体结合和 Rv3066 调节的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78db/3467072/c925425cc1fe/gks677f1.jpg

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