Mycobacterium tuberculosis genes Rv0844c/Rv0845 encoding the NarL response regulator and NarS histidine kinase are hypothesized to constitute a two-component system involved in the regulation of nitrate metabolism. However, there is no experimental evidence to support this. In this study, we established M. tuberculosis NarL/NarS as a functional two-component system and identified His(241) and Asp(61) as conserved phosphorylation sites in NarS and NarL, respectively. Transcriptional profiling between M. tuberculosis H37Rv and Delta narL mutant strain during exponential growth in broth cultures with or without nitrate defined an similar to 30-gene NarL regulon that exhibited significant overlap with DevR-regulated genes, thereby implicating a...
DevR/DosR is a well-characterized regulator in Mycobacterium tuberculosis which is implicated in var...
DevR activates the transcription of ∼48 genes in response to hypoxia and other stresses and triggers...
BACKGROUND: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Mycobacterium tuberculosis induces nitrate reductase activity in response to decreasing oxygen level...
Under hypoxic conditions or upon exposure to low concentrations of nitric oxide, DevR transcriptiona...
© 2015 John Wiley & Sons Ltd.A key component to the success of Mycobacterium tuberculosis as a patho...
<div><p><em>Mycobacterium tuberculosis</em> induces nitrate reductase activity in response to decrea...
Under hypoxic conditions or upon exposure to low concentrations of nitric oxide, DevR transcriptiona...
BACKGROUND: DevR (also called as DosR) is a two-domain response regulator of the NarL subfamily that...
Nitrate reduction is believed to be vital for the survival of tubercle bacteria under hypoxic/anaero...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
DevR is a transcriptional regulator that mediates the genetic response of Mycobacterium tuberculosis...
In response to stresses, Mycobacterium cells become dormant. This process is regulated by the DosR t...
Mycobacterium tuberculosis, the causative organism of the disease tuberculosis (TB) in humans, leads...
By subtractive hybridization, we isolated genes, differentially expressed in virulent strain (dev), ...
DevR/DosR is a well-characterized regulator in Mycobacterium tuberculosis which is implicated in var...
DevR activates the transcription of ∼48 genes in response to hypoxia and other stresses and triggers...
BACKGROUND: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Mycobacterium tuberculosis induces nitrate reductase activity in response to decreasing oxygen level...
Under hypoxic conditions or upon exposure to low concentrations of nitric oxide, DevR transcriptiona...
© 2015 John Wiley & Sons Ltd.A key component to the success of Mycobacterium tuberculosis as a patho...
<div><p><em>Mycobacterium tuberculosis</em> induces nitrate reductase activity in response to decrea...
Under hypoxic conditions or upon exposure to low concentrations of nitric oxide, DevR transcriptiona...
BACKGROUND: DevR (also called as DosR) is a two-domain response regulator of the NarL subfamily that...
Nitrate reduction is believed to be vital for the survival of tubercle bacteria under hypoxic/anaero...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
DevR is a transcriptional regulator that mediates the genetic response of Mycobacterium tuberculosis...
In response to stresses, Mycobacterium cells become dormant. This process is regulated by the DosR t...
Mycobacterium tuberculosis, the causative organism of the disease tuberculosis (TB) in humans, leads...
By subtractive hybridization, we isolated genes, differentially expressed in virulent strain (dev), ...
DevR/DosR is a well-characterized regulator in Mycobacterium tuberculosis which is implicated in var...
DevR activates the transcription of ∼48 genes in response to hypoxia and other stresses and triggers...
BACKGROUND: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...