The devR-devS two-component system of Mycobacterium tuberculosis was identified earlier and partially characterized in our laboratory. A devR: :kan mutant of M. tuberculosis was constructed by allelic exchange. The devR mutant strain showed reduced cell-tocell adherence in comparison to the parental strain in laboratory culture media. This phenotype was reversed on complementation with a wild-type copy of devR. T he devR mutant and parental strains grew at equivalent rates within human monocytes either in the absence or in the presence of lymphocytic cells. The expression of DevR was not modulated upon entry of M. tuberculosis into human monocytes. However, guinea pigs infected with the mutant strain showed a significant decrease in gr...
The DevR response regulator mediates adaptation of Mycobacterium tuberculosis to various signals tha...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...
The devR-devS two-component system of Mycobacterium tuberculosis was identified earlier and partiall...
By subtractive hybridization, we isolated genes, differentially expressed in virulent strain (dev), ...
BACKGROUND: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Two-component regulatory signal transduction systems are widely distributed among bacteria and enabl...
Background: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
We had recently reported that the mymA operon (Rv3083 to Rv3089) of Mycobacterium tuberculosis is re...
We had recently reported that the mymA operon (Rv3083 to Rv3089) of Mycobacterium tuberculosis is re...
Background: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
The Mycobacterium tuberculosis dosR gene (Rv3133c) is part of an operon, Rv3134c-Rv3132c, and encode...
The Mycobacterium tuberculosis dosR gene (Rv3133c) is part of an operon, Rv3134c-Rv3132c, and encode...
The DevR response regulator mediates adaptation of Mycobacterium tuberculosis to various signals tha...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...
The devR-devS two-component system of Mycobacterium tuberculosis was identified earlier and partiall...
By subtractive hybridization, we isolated genes, differentially expressed in virulent strain (dev), ...
BACKGROUND: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Two-component regulatory signal transduction systems are widely distributed among bacteria and enabl...
Background: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
We had recently reported that the mymA operon (Rv3083 to Rv3089) of Mycobacterium tuberculosis is re...
We had recently reported that the mymA operon (Rv3083 to Rv3089) of Mycobacterium tuberculosis is re...
Background: The DevR response regulator is implicated in both hypoxic adaptation and virulence of My...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
Two-component systems play a central role in the adaptation of pathogenic bacteria to the environmen...
The Mycobacterium tuberculosis dosR gene (Rv3133c) is part of an operon, Rv3134c-Rv3132c, and encode...
The Mycobacterium tuberculosis dosR gene (Rv3133c) is part of an operon, Rv3134c-Rv3132c, and encode...
The DevR response regulator mediates adaptation of Mycobacterium tuberculosis to various signals tha...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...
Tuberculosis kills an estimated 2 million people each year. The causative organism, Mycobacterium tu...