Regulation of the OxyR transcription factor by hydrogen peroxide and the cellular thiol—disulfide status

F Åslund, M Zheng, J Beckwith… - Proceedings of the …, 1999 - National Acad Sciences
Proceedings of the National Academy of Sciences, 1999National Acad Sciences
The Escherichia coli transcription factor OxyR is activated by the formation of an
intramolecular disulfide bond and subsequently is deactivated by enzymatic reduction of the
disulfide bond. Here we show that OxyR can be activated by two possible pathways. In
mutants defective in the cellular disulfide-reducing systems, OxyR is constitutively activated
by a change in the thiol—disulfide redox status in the absence of added oxidants. In wild-
type cells, OxyR is activated by hydrogen peroxide. By monitoring the presence of the OxyR …
The Escherichia coli transcription factor OxyR is activated by the formation of an intramolecular disulfide bond and subsequently is deactivated by enzymatic reduction of the disulfide bond. Here we show that OxyR can be activated by two possible pathways. In mutants defective in the cellular disulfide-reducing systems, OxyR is constitutively activated by a change in the thiol—disulfide redox status in the absence of added oxidants. In wild-type cells, OxyR is activated by hydrogen peroxide. By monitoring the presence of the OxyR disulfide bond after exposure to hydrogen peroxide in vivo and in vitro, we also show that the kinetics of OxyR oxidation by low concentrations of hydrogen peroxide is significantly faster than the kinetics of OxyR reduction, allowing for transient activation in an overall reducing environment. We propose that the activity of OxyR in vivo is determined by the balance between hydrogen peroxide levels and the cellular redox environment.
National Acad Sciences