结核分枝杆菌
转录调控
表型
效应器
调节器
转录因子
生物
药品
利福平
基因
基因表达调控
抄写(语言学)
下调和上调
细胞生物学
转录组
肺结核
药物开发
基因表达
抗药性
发起人
药物发现
体外
药理学
负调节器
遗传学
潜伏性肺结核
药物代谢
药物耐受性
结核病疫苗
作者
Jees Sebastian,Shuyi Ma,Tige R. Rustad,Ethan Bustad,Anooja Thomas,Sukhwinder Singh,Pradeep Kumar,David R. Sherman,David Alland
标识
DOI:10.1038/s41467-025-67152-2
摘要
Drug-tolerance in Mycobacterium tuberculosis (Mtb) may delay treatment response while drug hypersusceptibility should improve treatment. We investigate the transcriptional regulation of these states in Mtb using a Transcriptional Regulator Induced Phenotype screen combined with an extended, steady-state rifampicin exposure method. We identify three transcription factors (TFs): Rv1359, Rv2887, and Rv3833, whose induction enhances rifampicin tolerance, and four TFs, Rv1189 (sigI), Rv1846c (blaI), Rv2069 (sigC), and Rv3736, whose induction elicits hypersusceptibility. Inducing the TFs blaI and Rv2887 produces opposite phenotypes due to their divergent regulation of the cydA and icl1, genes that we find to reduce redox stress when overexpressed. Thus, Rv2887 induces icl1 expression which contributes to drug tolerance whereas blaI downregulates cydA, which contributes to drug hypersusceptibility. In contrast, divergent regulation of tgs1 and Rv3083 by the TF Rv3736 results in a convergent hypersusceptible phenotype due to the opposing effects of tgs1 and Rv3083 on Mtb permeability to rifampicin. Our findings demonstrate the complex transcriptional regulation of drug tolerance and hypersusceptibility that cannot be captured by studying the activity of individual effector genes. Induction of TFs that regulate Mtb response to drug exposure may either augment or diminish treatment efficacy. These TFs are thus potential new targets for drug development.
科研通智能强力驱动
Strongly Powered by AbleSci AI