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- W2512465611 abstract "Significance Bacteria sense and protect themselves against oxidative stress using redox-sensing transcription regulators with cysteine residues. Here, we investigate at the molecular level how the YodB protein, a transcription repressor in Bacillus subtilis , monitors and responds to different oxidative stresses. Diamide stress leads to the formation of disulfide bonds between cysteine residues, whereas the more toxic quinone compound methyl- p -benzoquinone forms an adduct on a specific cysteine residue. These chemical modifications lead to considerably different changes in the YodB structure, causing the release of YodB from the DNA of antioxidant genes. The redox-sensing transcription regulator YodB allows B. subtilis to respond to multiple oxidative signals of differing toxicity by adopting different structures." @default.
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- W2512465611 date "2016-08-16" @default.
- W2512465611 modified "2023-10-16" @default.
- W2512465611 title "Two distinct mechanisms of transcriptional regulation by the redox sensor YodB" @default.
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- W2512465611 doi "https://doi.org/10.1073/pnas.1604427113" @default.
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