Abstract
Proteins belonging to the thioredoxin (Trx) superfamily are abundant in all organisms. They share the same structural features, arranged in a seemingly simple fold, but they perform a multitude of functions in oxidative protein folding and electron transfer pathways. We use the C-terminal domain of the unique transmembrane reductant conductor DsbD as a model for an in-depth analysis of the factors controlling the reactivity of the Trx fold. We employ NMR spectroscopy, x-ray crystallography, mutagenesis, in vivo functional experiments applied to DsbD, and a comparative sequence analysis of Trx-fold proteins to determine the effect of residues in the vicinity of the active site on the ionization of the key nucleophilic cysteine of the -CXXC-motif. We show that the function and reactivity of Trx-fold proteins depend critically on the electrostatic features imposed by an extended active-site motif. © 2014 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Mavridou, D. A. I., Saridakis, E., Kritsiligkou, P., Mozley, E. C., Ferguson, S. J., & Redfield, C. (2014). An extended active-site motif controls the reactivity of the thioredoxin fold. Journal of Biological Chemistry, 289(12), 8681–8696. https://doi.org/10.1074/jbc.M113.513457
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