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Mycobacterium tuberculosis PhoP integrates stress response to intracellular survival by regulating cAMP level
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Abstract
Survival of
M. tuberculosis
within the host macrophages requires the bacterial virulence regulator PhoP, but the underlying reason remains unknown. cAMP is one of the most widely used second messengers, which impacts on a wide range of cellular responses in microbial pathogens including
M. tuberculosis
. Herein, we hypothesized that intra-bacterial cAMP level could be controlled by PhoP since this major regulator plays a key role in bacterial responses against numerous stress conditions. A transcriptomic analysis reveals that PhoP functions as a repressor of cAMP-specific phosphodiesterase (PDE) Rv0805, which hydrolyses cAMP. In keeping with these results, we find specific recruitment of the regulator within the promoter region of
rv0805
PDE, and absence of
phoP
or ectopic expression of
rv0805
independently accounts for elevated PDE synthesis leading to depletion of intra-bacterial cAMP level. Thus, genetic manipulation to inactivate PhoP-
rv0805
-cAMP pathway decreases cAMP level, stress tolerance and intracellular survival of the bacillus.
Title: Mycobacterium tuberculosis
PhoP integrates stress response to intracellular survival by regulating cAMP level
Description:
Abstract
Survival of
M.
tuberculosis
within the host macrophages requires the bacterial virulence regulator PhoP, but the underlying reason remains unknown.
cAMP is one of the most widely used second messengers, which impacts on a wide range of cellular responses in microbial pathogens including
M.
tuberculosis
.
Herein, we hypothesized that intra-bacterial cAMP level could be controlled by PhoP since this major regulator plays a key role in bacterial responses against numerous stress conditions.
A transcriptomic analysis reveals that PhoP functions as a repressor of cAMP-specific phosphodiesterase (PDE) Rv0805, which hydrolyses cAMP.
In keeping with these results, we find specific recruitment of the regulator within the promoter region of
rv0805
PDE, and absence of
phoP
or ectopic expression of
rv0805
independently accounts for elevated PDE synthesis leading to depletion of intra-bacterial cAMP level.
Thus, genetic manipulation to inactivate PhoP-
rv0805
-cAMP pathway decreases cAMP level, stress tolerance and intracellular survival of the bacillus.
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Abstract
Survival of M. tuberculosis within the host macrophages requires the virulence regulator PhoP, but the underlying mechanism remains unknown. Because growin...
Mycobacterium tuberculosis PhoP integrates stress response to intracellular survival by regulating cAMP level
Mycobacterium tuberculosis PhoP integrates stress response to intracellular survival by regulating cAMP level
Survival of
Mycobacterium tuberculosis
within the host macrophages requires the bacterial virulence regulator PhoP, but the underlying reaso...
Mycobacterium tuberculosis PhoP integrates stress response to intracellular survival by regulating cAMP level
Mycobacterium tuberculosis PhoP integrates stress response to intracellular survival by regulating cAMP level
Abstract
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