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Fur is required for the activation of virulence gene expression through the induction of the sae regulatory system in Staphylococcus aureus.


ABSTRACT: Our previous studies showed that both Sae and Fur are required for the induction of eap and emp expression in low iron. In this study, we show that expression of sae is also iron-regulated, as sae expression is activated by Fur in low iron. We also demonstrate that both Fur and Sae are required for full induction of the oxidative stress response and expression of non-covalently bound surface proteins in low-iron growth conditions. In addition, Sae is required for the induced expression of the important virulence factors isdA and isdB in low iron. Our studies also indicate that Fur is required for the induced expression of the global regulators Agr and Rot in low iron and a number of extracellular virulence factors such as the haemolysins which are also Sae- and Agr-regulated. Hence, we show that Fur is central to a complex regulatory network that is required for the induced expression of a number of important S. aureus virulence determinants in low iron.

SUBMITTER: Johnson M 

PROVIDER: S-EPMC2994983 | biostudies-literature | 2011 Jan

REPOSITORIES: biostudies-literature

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Fur is required for the activation of virulence gene expression through the induction of the sae regulatory system in Staphylococcus aureus.

Johnson Miranda M   Sengupta Mrittika M   Purves Joanne J   Tarrant Emma E   Williams Peter H PH   Cockayne Alan A   Muthaiyan Arunachalam A   Stephenson Robert R   Ledala Nagender N   Wilkinson Brian J BJ   Jayaswal Radheshyam K RK   Morrissey Julie A JA  

International journal of medical microbiology : IJMM 20100812 1


Our previous studies showed that both Sae and Fur are required for the induction of eap and emp expression in low iron. In this study, we show that expression of sae is also iron-regulated, as sae expression is activated by Fur in low iron. We also demonstrate that both Fur and Sae are required for full induction of the oxidative stress response and expression of non-covalently bound surface proteins in low-iron growth conditions. In addition, Sae is required for the induced expression of the im  ...[more]

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