Mycobacterium tuberculosis Transcription Factor EmbR Regulates the Expression of Key Virulence Factors That Aid in Ex Vivo and In Vivo Survival

被引:5
作者
Kumar, Suresh [1 ]
Khan, Mehak Zahoor [1 ]
Khandelwal, Neha [2 ]
Chongtham, Chen [1 ]
Singha, Biplab [1 ]
Dabla, Ankita [1 ]
Behera, Debashree [4 ]
Singh, Archana [3 ]
Gopal, Balasubramanian [4 ]
Arimbasseri, G. Aneeshkumar [1 ]
Kamat, Siddhesh S. [2 ]
Nandicoori, Vinay Kumar [1 ,5 ]
机构
[1] Natl Inst Immunol, New Delhi, India
[2] Indian Inst Sci Educ & Res, Dept Biol, Pune, Maharashtra, India
[3] Acad Sci & Innovat Res AcSIR, Ghaziabad, India
[4] Indian Inst Sci, Mol Biophys Unit, Bangalore, Karnataka, India
[5] CSIR Ctr Cellular & Mol Biol, Hyderabad, India
来源
MBIO | 2022年 / 13卷 / 03期
基金
英国惠康基金;
关键词
transcription; transcription factors; hypoxia; mycobacteria; tuberculosis; granuloma; EmbR; Mycobacterium tuberculosis; ETHAMBUTOL RESISTANCE; GENE-EXPRESSION; PROTEIN-KINASE; PKNH; PHOSPHORYLATION; DIGESTION; HYPOXIA; OPERON;
D O I
10.1128/mbio.03836-21
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Mycobacterium tuberculosis encodes similar to 200 transcription factors that modulate gene expression under different microenvironments in the host. Even though high-throughput chromatin immunoprecipitation sequencing and transcriptome sequencing (RNA-seq) studies have identified the regulatory network for similar to 80% of transcription factors, many transcription factors remain uncharacterized. EmbR is one such transcription factor whose in vivo regulon and biological function are yet to be elucidated. Previous in vitro studies suggested that phosphorylation of EmbR by PknH upregulates the embCAB operon. Using a gene replacement mutant of embR, we investigated its role in modulating cellular morphology, antibiotic resistance, and survival in the host. Contrary to the prevailing hypothesis, under normal growth conditions, EmbR is neither phosphorylated nor impacted by ethambutol resistance through the regulation of the embCAB operon. The embR deletion mutant displayed attenuated M. tuberculosis survival in vivo. RNA-seq analysis suggested that EmbR regulates operons involved in the secretion pathway, lipid metabolism, virulence, and hypoxia, including well-known hypoxia-inducible genes devS and hspX. Lipidome analysis revealed that EmbR modulates levels of all lysophospholipids, several phospholipids, and M. tuberculosis-specific lipids, which is more pronounced under hypoxic conditions. We found that the EmbR mutant is hypersusceptible to hypoxic stress, and RNA sequencing performed under hypoxic conditions indicated that EmbR majorly regulates genes involved in response to acidic pH, hypoxia, and fatty acid metabolism. We observed condition-specific phosphorylation of EmbR, which contributes to EmbR-mediated transcription of several essential genes, ensuring enhanced survival. Collectively, the study establishes EmbR as a key modulator of hypoxic response that facilitates mycobacterial survival in the host. IMPORTANCE Mycobacterium tuberculosis modulates its transcriptional machinery in response to dynamic microenvironments encountered within the host. In this study, we identified that EmbR, a transcription factor, plays important roles in modulating cellular morphology, antibiotic resistance, and survival in the host. We found that EmbR undergoes condition-specific phosphorylation for its activation. Together, the study establishes a key role of EmbR as a transcriptional activator of genes belonging to multiple pathways, viz., virulence, secretion, or polyketide synthesis, that aid in mycobacterial survival during hypoxia and within the host.
引用
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页数:23
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