生物膜
多药耐受
微生物学
变形链球菌
突变体
氧化应激
抗生素
生物
活性氧
细菌
基因
生物化学
遗传学
作者
Martin Nilsson,Tim Holm Jakobsen,Michael Givskov,Svante Twetman,Tim Tolker‐Nielsen
出处
期刊:Microbiology
[Microbiology Society]
日期:2019-03-01
卷期号:165 (3): 334-342
被引量:23
摘要
Knowledge about biofilm-associated antibiotic tolerance mechanisms is warranted in order to develop effective treatments against biofilm infections. We performed a screen of a Streptococcus mutans transposon mutant library for mutants with reduced biofilm-associated antimicrobial tolerance, and found that the spxA1 gene plays a role in tolerance towards gentamicin and other antibiotics such as vancomycin and linezolid. SpxA1 is a regulator of genes involved in the oxidative stress response in S. mutans. The oxidative stress response genes gor and ahpC were found to be up-regulated upon antibiotic treatment of S. mutans wild-type biofilms, but not spxA1 mutant biofilms. The gor gene product catalyses the formation of glutathione which functions as an important antioxidant during oxidative stress, and accordingly biofilm-associated antibiotic tolerance of the spxA1 mutant could be restored by exogenous addition of glutathione. Our results indicate that the oxidative stress response plays a role in biofilm-associated antibiotic tolerance of S. mutans, and add to the on-going debate on the role of reactive oxygen species in antibiotic mediated killing of bacteria.
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