Expression of Multidrug Resistance Efflux Pump Gene norA Is Iron Responsive in Staphylococcus aureus

Author:

Deng Xin1,Sun Fei1,Ji Quanjiang1,Liang Haihua1,Missiakas Dominique2,Lan Lefu3,He Chuan1

Affiliation:

1. Department of Chemistry and Institute for Biophysical Dynamics, Chicago, Illinois, USA

2. Department of Microbiology The University of Chicago, Chicago, Illinois, USA

3. Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China

Abstract

ABSTRACT Staphylococcus aureus utilizes efflux transporter NorA to pump out a wide range of structurally dissimilar drugs, conferring low-level multidrug resistance. The regulation of norA expression has yet to be fully understood although past studies have revealed that this gene is under the control of the global transcriptional regulator MgrA and the two-component system ArlRS. To identify additional regulators of norA , we screened a transposon library in strain Newman expressing the transcriptional fusion norA-lacZ for altered β-galactosidase activity. We identify a transposon insertion in fhuB , a gene that encodes a ferric hydroxamate uptake system permease, and propose that the norA transcription is iron responsive. In agreement with this observation, addition of FeCl 3 repressed the induction of norA-lacZ , suggesting that bacterial iron uptake plays an important role in regulating norA transcription. In addition, a fur (ferric uptake regulator) deletion exhibited compromised norA transcription and reduced resistance to quinolone compared to the wild-type strain, indicating that fur functions as a positive regulator of norA . A putative Fur box identified in the promoter region of norA was confirmed by electrophoretic mobility shift and DNase I footprint assays. Finally, by employing a siderophore secretion assay, we reveal that NorA may contribute to the export of siderophores. Collectively, our experiments uncover some novel interactions between cellular iron level and norA regulation in S. aureus .

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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