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DsbA is a redox-switchable mechanical chaperone.
Eckels, Edward C; Chaudhuri, Deep; Chakraborty, Soham; Echelman, Daniel J; Haldar, Shubhasis.
Afiliación
  • Eckels EC; Department of Biological Sciences, Columbia University New York NY 10027 USA ece7001@nyp.org.
  • Chaudhuri D; Department of Internal Medicine, Columbia University Medical Center New York NY 10032 USA.
  • Chakraborty S; Department of Biological Sciences, Ashoka University Sonepat Haryana 131029 India shubhasis.haldar@ashoka.edu.in.
  • Echelman DJ; Department of Biological Sciences, Ashoka University Sonepat Haryana 131029 India shubhasis.haldar@ashoka.edu.in.
  • Haldar S; Department of Biological Sciences, Columbia University New York NY 10027 USA ece7001@nyp.org.
Chem Sci ; 12(33): 11109-11120, 2021 Aug 25.
Article en En | MEDLINE | ID: mdl-34522308
ABSTRACT
DsbA is a ubiquitous bacterial oxidoreductase that associates with substrates during and after translocation, yet its involvement in protein folding and translocation remains an open question. Here we demonstrate a redox-controlled chaperone activity of DsbA, on both cysteine-containing and cysteine-free substrates, using magnetic tweezers-based single molecule force spectroscopy that enables independent measurements of oxidoreductase activity and chaperone behavior. Interestingly we found that this chaperone activity is tuned by the oxidation state of DsbA; oxidized DsbA is a strong promoter of folding, but the effect is weakened by the reduction of the catalytic CXXC motif. We further localize the chaperone binding site of DsbA using a seven-residue peptide which effectively blocks the chaperone activity. We found that the DsbA assisted folding of proteins in the periplasm generates enough mechanical work to decrease the ATP consumption needed for periplasmic translocation by up to 33%.

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2021 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2021 Tipo del documento: Article