DOI: 10.1128/spectrum.00064-26 ISSN: 2165-0497
Pseudomonas aeruginosa mgtC
gene is under the control of PhoP and CbrAB regulators, and its expression can be visualized in macrophages
Anne Bonhoure, Pauline Nogaret, Valérie Perez, Flore Nilly, Sylvaine Huc-Brandt, Malika Moussouni, Robert E. W. Hancock, Virginie Molle, Anne-Béatrice Blanc-Potard ABSTRACT
The MgtC virulence factor is important during the intramacrophage stage in both classical intracellular pathogens, such as
Salmonella
Typhimurium, and in extracellular bacteria that transiently encounter intracellular environments during infection, such as
Pseudomonas aeruginosa
. In these different pathogens,
mgtC
expression is induced
in vitro
by magnesium ion depletion, a condition reported to mimic the macrophage environment. Here, we developed an unstable GFP reporter system to monitor in real time the transcriptional activation of the
P. aeruginosa mgtC
promoter. After
in vitro
validation in magnesium-defined media, this reporter system allowed visualization of the
mgtC
promoter induction in a subset of bacteria when
P. aeruginosa
localized inside cultured macrophages. In addition, although rare under our experimental conditions,
in vivo
activation of the
mgtC
promoter was observed for the first time within macrophages of live, infected zebrafish larvae, a cutting-edge vertebrate model for real-time imaging. While MgtC regulation in
Salmonella
is mediated by the magnesium-responsive PhoPQ two-component system, its regulation in
P. aeruginosa
remained unknown. The use of mutant strains for two-component regulatory systems revealed that the PhoP regulator, but not by its cognate sensor PhoQ, was required to activate
P. aeruginosa
MgtC expression
in vitro
. Unexpectedly, CbrAB, a two-component system specific to
Pseudomonas
species, was also involved in
P. aeruginosa
MgtC regulation. Both PhoP and CbrB regulatory proteins were found to directly bind the
mgtC
promoter, supporting a dual transcriptional control. These findings reveal substantial differences in
mgtC
gene regulation in different bacterial pathogens, reflecting distinct strategies to drive appropriate expression of a shared virulence factor involved in macrophage adaptation.
IMPORTANCE
The adaptation of bacterial pathogens to the host intracellular microenvironment requires tight and rapid regulation of specific genes, and investigating the
in vivo
transcriptional dynamics of such genes is a major challenge. Here, we focused on the expression of
mgtC
, a gene important for adaptation to the intramacrophage environment in classical intracellular pathogens, such as
Salmonella
Typhimurium, and bacteria with a transient intracellular lifestyle, such as
Pseudomonas aeruginosa
. An unstable GFP reporter system was designed to monitor the transcriptional dynamics of
P. aeruginosa mgtC
. The use of this reporter system in a state-of-the-art vertebrate model for live imaging, the zebrafish embryo, allowed
in vivo
tracking of
P. aeruginosa mgtC
promoter activation inside macrophages in a living host. Furthermore, the expression of
P. aeruginosa mgtC
was found to be regulated through a mechanism distinct from that of
Salmonella
MgtC, since it involves the PhoP regulatory protein, but not the PhoQ sensor, and the
Pseudomonas
-specific CbrAB two-component system, reflecting diverse, finely tuned strategies to control a virulence factor shared by several major human pathogens.