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Redox signal transduction: Mutations shifting [2Fe-2S] centers of the SoxR sensor-regulator to the oxidized form

  • Harvard University

Research output: Contribution to journalArticlepeer-review

134 Scopus citations

Abstract

SoxR is a [2Fe-2S] transcription factor triggered by oxidative stress and activated in vitro by one-electron oxidation or assembly of the iron- sulfur centers. To distinguish which mechanism operates in cells, we studied constitutively active SoxR (SoxR(c)) proteins. Three SoxR(c) proteins contained [2Fe-2S] centers required for in vitro transcription and, like wild-type SoxR, were inactivated by chemical reduction. However, in vivo spectroscopy showed that even without oxidative stress, the three SoxR(c) proteins failed to accumulate with reduced [2Fe-2S] (≤4% compared to ≤40% for wild type). One SoxR(c) protein had a redox potential 65 mV lower than wild type, consistent with its accumulation in the oxidized (activated) form in vivo. These results link in vitro and in vivo approaches showing novel redox regulation that couples an iron-sulfur oxidation state to promoter activation.

Original languageEnglish
Pages (from-to)121-129
Number of pages9
JournalCell
Volume88
Issue number1
DOIs
StatePublished - Jan 10 1997

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