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Brzozowski, R.

Publications and source records attributed to Brzozowski, R..

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Assessing the role of cold-shock protein C: A novel regulator of Acinetobacter baumannii biofilm formation and virulence

Acinetobacter baumannii is a formidable opportunistic pathogen that is notoriously difficult to eradicate from hospital settings and can spread quickly via healthcare personnel despite preventive measures. This resilience is often attributed to a proclivity for biofilm formation, which grants A. baumannii a higher tolerance towards external stress, desiccation, and antimicrobials. Despite this, little is known regarding the mechanisms orchestrating A. baumannii biofilm formation. Herein, we performed RNA-seq on biofilm and planktonic populations for the multidrug resistant isolate, AB5075, and identified 438 genes with altered expression. To assess the potential role of genes upregulated within biofilms, we tested the biofilm forming capacity of their respective mutants from an A. baumannii transposon library. In so doing, we uncovered 24 genes whose disruption led to reduced biofilm formation. One such element, cold shock protein C (cspC), produced a mucoidal, non-mucoviscous colony phenotype. RNA-sequencing of this mutant revealed the down regulation of pili and fimbriae in the cspC mutant, which would explain the decreased biofilm observed. Using MIC assays, we note that the mutant displayed increased antibiotic tolerance that we hypothesize is mediated by overexpression of multi-drug efflux pumps and altered mRNA stability of their corresponding transcriptional repressor. Finally, we show that CspC is required for survival during oxidative stress and challenge by the human immune system, and plays a pivotal role during systemic infection. Collectively, our work identifies a cadre of new biofilm associated genes within A. baumannii and provides insight into the global regulatory network of this emerging human pathogen.

microbiology↗