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Outer Membrane Permeability Barrier Disruption by Polymyxin in Polymyxin-Susceptible and -Resistant Salmonella typhimurium
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In contrast to their polymyxin-susceptible parent strains, polymyxin-resistant
Salmonella typhimurium
mutants (
pmrA
strains) did not lose their outer membrane permeability barrier to macromolecules such as lysozyme and periplasmic proteins upon polymyxin treatment. The sensitization of
pmrA
strains to deoxycholate-induced lysis required 10-times-higher polymyxin concentrations than did the sensitization of the parent strains. These findings indicate that the
pmrA
mutation affects the outer membrane and decreases its susceptibility to polymyxin. By contrast, the
pmrA
mutants did not differ from their parents in the uptake of gentian violet after treatment with polymyxin, suggesting a degree of specificity in the
pmrA
effect in the outer membrane.
American Society for Microbiology
Title: Outer Membrane Permeability Barrier Disruption by Polymyxin in Polymyxin-Susceptible and -Resistant
Salmonella typhimurium
Description:
In contrast to their polymyxin-susceptible parent strains, polymyxin-resistant
Salmonella typhimurium
mutants (
pmrA
strains) did not lose their outer membrane permeability barrier to macromolecules such as lysozyme and periplasmic proteins upon polymyxin treatment.
The sensitization of
pmrA
strains to deoxycholate-induced lysis required 10-times-higher polymyxin concentrations than did the sensitization of the parent strains.
These findings indicate that the
pmrA
mutation affects the outer membrane and decreases its susceptibility to polymyxin.
By contrast, the
pmrA
mutants did not differ from their parents in the uptake of gentian violet after treatment with polymyxin, suggesting a degree of specificity in the
pmrA
effect in the outer membrane.
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