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结核分枝杆菌 Rv0366c-Rv0367c 编码一个非典型的 PezAT 样毒素-抗毒素对。

Mycobacterium tuberculosis Rv0366c-Rv0367c encodes a non-canonical PezAT-like toxin-antitoxin pair.

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, 560012, India.

Tuberculosis Research Laboratory, Vaccine and Infectious Disease Research Centre, Translational Health Science and Technology Institute, NCR Biotech Science Cluster, 3rd Milestone, PO Box #4, Faridabad, Haryana, 121001, India.

出版信息

Sci Rep. 2019 Feb 4;9(1):1163. doi: 10.1038/s41598-018-37473-y.

Abstract

Toxin-antitoxin (TA) systems are ubiquitously existing addiction modules with essential roles in bacterial persistence and virulence. The genome of Mycobacterium tuberculosis encodes approximately 79 TA systems. Through computational and experimental investigations, we report for the first time that Rv0366c-Rv0367c is a non-canonical PezAT-like toxin-antitoxin system in M. tuberculosis. Homology searches with known PezT homologues revealed that residues implicated in nucleotide, antitoxin-binding and catalysis are conserved in Rv0366c. Unlike canonical PezA antitoxins, the N-terminal of Rv0367c is predicted to adopt the ribbon-helix-helix (RHH) motif for deoxyribonucleic acid (DNA) recognition. Further, the modelled complex predicts that the interactions between PezT and PezA involve conserved residues. We performed a large-scale search in sequences encoded in 101 mycobacterial and 4500 prokaryotic genomes and show that such an atypical PezAT organization is conserved in 20 other mycobacterial organisms and in families of class Actinobacteria. We also demonstrate that overexpression of Rv0366c induces bacteriostasis and this growth defect could be restored upon co-expression of cognate antitoxin, Rv0367c. Further, we also observed that inducible expression of Rv0366c in Mycobacterium smegmatis results in decreased cell-length and enhanced tolerance against a front-line tuberculosis (TB) drug, ethambutol. Taken together, we have identified and functionally characterized a novel non-canonical TA system from M. tuberculosis.

摘要

毒素-抗毒素(TA)系统是普遍存在的成瘾模块,在细菌的持久性和毒力中起着重要作用。结核分枝杆菌的基因组编码大约 79 个 TA 系统。通过计算和实验研究,我们首次报道 Rv0366c-Rv0367c 是结核分枝杆菌中非典型的 PezAT 样毒素-抗毒素系统。与已知的 PezT 同源物的同源搜索表明,核苷酸、抗毒素结合和催化涉及的残基在 Rv0366c 中保守。与典型的 PezA 抗毒素不同,Rv0367c 的 N 端预测采用 ribbon-helix-helix(RHH)基序用于脱氧核糖核酸(DNA)识别。此外,模型化的复合物预测 PezT 和 PezA 之间的相互作用涉及保守残基。我们在 101 株分枝杆菌和 4500 株原核生物基因组编码的序列中进行了大规模搜索,结果表明这种非典型的 PezAT 结构在 20 种其他分枝杆菌和放线菌家族中保守。我们还证明,过表达 Rv0366c 会诱导细菌停滞,而这种生长缺陷可以通过共表达同源抗毒素 Rv0367c 来恢复。此外,我们还观察到在耻垢分枝杆菌中诱导表达 Rv0366c 会导致细胞长度减小,并增强对一线结核病(TB)药物乙胺丁醇的耐受性。总之,我们已经从结核分枝杆菌中鉴定并功能表征了一种新型的非典型 TA 系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/408d/6362051/a3ab147b36cd/41598_2018_37473_Fig1_HTML.jpg

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