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PMID: 15231800 Published · ppublish English Journal Article

Global gene expression in Staphylococcus aureus biofilms.

Journal of bacteriology ·Vol. 186 ·No. 14 ·2004-07-00 ·Pages 4665-84

Beenken KE, Dunman PM, McAleese F, Macapagal D, Murphy E, Projan SJ, Blevins JS, Smeltzer MS

Abstract

We previously demonstrated that mutation of the staphylococcal accessory regulator (sarA) in a clinical isolate of Staphylococcus aureus (UAMS-1) results in an impaired capacity to form a biofilm in vitro (K. E. Beenken, J. S. Blevins, and M. S. Smeltzer, Infect. Immun. 71:4206-4211, 2003). In this report, we used a murine model of catheter-based biofilm formation to demonstrate that a UAMS-1 sarA mutant also has a reduced capacity to form a biofilm in vivo. Surprisingly, mutation of the UAMS-1 ica locus had little impact on biofilm formation in vitro or in vivo. In an effort to identify additional loci that might be relevant to biofilm formation and/or the adaptive response required for persistence of S. aureus within a biofilm, we isolated total cellular RNA from UAMS-1 harvested from a biofilm grown in a flow cell and compared the transcriptional profile of this RNA to RNA isolated from both exponential- and stationary-phase planktonic cultures. Comparisons were done using a custom-made Affymetrix GeneChip representing the genomic complement of six strains of S. aureus (COL, N315, Mu50, NCTC 8325, EMRSA-16 [strain 252], and MSSA-476). The results confirm that the sessile lifestyle associated with persistence within a biofilm is distinct by comparison to the lifestyles of both the exponential and postexponential phases of planktonic culture. Indeed, we identified 48 genes in which expression was induced at least twofold in biofilms over expression under both planktonic conditions. Similarly, we identified 84 genes in which expression was repressed by a factor of at least 2 compared to expression under both planktonic conditions. A primary theme that emerged from the analysis of these genes is that persistence within a biofilm requires an adaptive response that limits the deleterious effects of the reduced pH associated with anaerobic growth conditions.

MeSH Terms
Adaptation, Physiological/genetics Anaerobiosis Animals Bacterial Proteins/genetics,physiology Biofilms/growth & development Catheterization Colony Count, Microbial Down-Regulation Female Gene Expression Profiling Gene Expression Regulation, Bacterial Genes, Bacterial Hydrogen-Ion Concentration Mice Mice, Inbred BALB C Mutation Plankton/genetics,growth & development RNA, Bacterial/analysis,isolation & purification RNA, Messenger/analysis,isolation & purification Staphylococcus aureus/genetics,physiology Trans-Activators/genetics,physiology Up-Regulation
Chemicals
Bacterial Proteins RNA, Bacterial RNA, Messenger SarA protein, bacterial Trans-Activators
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Beenken Karen E
Department of Microbiology and Immunology, University of Arkansas for Medical Sciences, 4301 W. Markham, Little Rock, AR 72205, USA.
Dunman Paul M
McAleese Fionnuala
Macapagal Daphne
Murphy Ellen
Projan Steven J
Blevins Jon S
Smeltzer Mark S
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Article Info
Journal
Journal of bacteriology
Abbr.
J Bacteriol
ISSN
0021-9193
Published
2004-07-00
Pages
4665-84
Language
English
Region
United States
NLM ID
2985120R
PMCID
PMC438561
Subset
IM
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