A transcriptional co‐repressor regulatory circuit controlling the heat‐shock response of M ycobacterium tuberculosis
The co‐ordinated regulation of heat shock proteins is critically important for the stress response of M . tuberculosis , failure of which results in enhanced immune recognition of the tubercle bacilli with reduced survival during chronic infections. In this study, we show that PhoP regulates the tra...
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Veröffentlicht in: | Molecular microbiology 2014-10, Vol.94 (2), p.450-465 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The co‐ordinated regulation of heat shock proteins is critically important for the stress response of
M
. tuberculosis
, failure of which results in enhanced immune recognition of the tubercle bacilli with reduced survival during chronic infections. In this study, we show that
PhoP
regulates the transcription of α‐crystallin 2 (
acr2
), expression of which increases more than any other gene of
M
. tuberculosis
during heat‐shock or following macrophage infection. We also show that regulation of
acr2
by
PhoP
is attributable to direct regulator‐promoter interactions at specific sites proximal to a sequence motif comprising the target site of another virulence factor,
HspR
. While both these regulators, on their own, are capable of influencing
acr2
expression, remarkably our results show that the two virulence regulators
PhoP
and
HspR
interact with each other to influence their
in vivo
recruitment at the
acr2
regulatory region, and in turn, contribute to stress‐specific regulation of
acr2
expression. We propose a model to suggest how protein–protein interactions between
PhoP
and
HspR
influence the regulation of α‐crystallin 2, an essential pathogenic determinant of
M
. tuberculosis
. |
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ISSN: | 0950-382X 1365-2958 |
DOI: | 10.1111/mmi.12778 |