4.7 Article

SaeR Binds a Consensus Sequence within Virulence Gene Promoters to Advance USA300 Pathogenesis

Journal

JOURNAL OF INFECTIOUS DISEASES
Volume 201, Issue 2, Pages 241-254

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1086/649570

Keywords

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Funding

  1. National Institutes of Health [NIH-PAR98-072]
  2. NIH-National Center for Research Resources [P20RR020185, P20RR16455-07]
  3. M. J. Murdock Charitable Trust
  4. Montana State University Agricultural Experimental Station

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This investigation examines the role of the SaeR/S 2-component system in USA300, a prominent circulating clone of community-associated methicillin-resistant Staphylococcus aureus. Using a saeR/S isogenic deletion mutant of USA300 (USA300 Delta saeR/S) in murine models of sepsis and soft-tissue infection revealed that this sensory system is critical to pathogenesis of USA300 during both superficial and invasive infection. Oligonucleotide microarray and real-time reverse-transcriptase polymerase chain reaction identified numerous extracellular virulence genes that are down-regulated in USA300 Delta saeR/S. Unexpectedly, an up-regulation of mecA and mecR1 corresponded to increased methicillin resistance in USA300 Delta saeR/S. 5'-RACE analysis defined transcript start sites for sbi, efb, mecA, lukS-PV, hlb, SAUSA300_1975, and hla, to underscore a conserved consensus sequence within promoter regions of genes under strong SaeR/S transcriptional regulation. Electrophoretic mobility shift assay experiments illustrated direct binding of SaeR(His) to promoter regions containing the conserved consensus sequence. Collectively, the findings of this investigation demonstrate that SaeR/S directly interacts with virulence gene promoters to significantly influence USA300 pathogenesis.

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