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Structural basis for aggregate dissolution and refolding by the Mycobacterium tuberculosis ClpB-DnaK bi-chaperone system
- Source :
- Cell reports
- Publication Year :
- 2020
-
Abstract
- SUMMARY The M. tuberculosis (Mtb) ClpB is a protein disaggregase that helps to rejuvenate the bacterial cell. DnaK is a protein foldase that can function alone, but it can also bind to the ClpB hexamer to physically couple protein disaggregation with protein refolding, although the molecular mechanism is not well understood. Here, we report the cryo-EM analysis of the Mtb ClpB-DnaK bi-chaperone in the presence of ATPĪ³S and a protein substrate. We observe three ClpB conformations in the presence of DnaK, identify a conserved TGIP loop linking the oligonucleotide/oligosaccharide-binding domain and the nucleotide-binding domain that is important for ClpB function, derive the interface between the regulatory middle domain of the ClpB and the DnaK nucleotide-binding domain, and find that DnaK binding stabilizes, but does not bend or tilt, the ClpB middle domain. We propose a model for the synergistic actions of aggregate dissolution and refolding by the Mtb ClpB-DnaK bi-chaperone system.<br />Graphical abstract<br />In brief Yin et al. use cryo-EM to analyze the structure of the Mycobacterium tuberculosis ClpB-DnaK bi-chaperone system. They find that the Mtb ClpB middle domain does not bend or tilt when interacting with DnaK. They therefore propose that the Mtb DnaK facilitates protein folding following protein disaggregation by ClpB.
- Subjects :
- 0301 basic medicine
Models, Molecular
Cryo-electron microscopy
genetic processes
Random hexamer
General Biochemistry, Genetics and Molecular Biology
Protein Refolding
Article
03 medical and health sciences
0302 clinical medicine
Bacterial Proteins
biology
Oligonucleotide
Chemistry
Escherichia coli Proteins
Endopeptidase Clp
Mycobacterium tuberculosis
030104 developmental biology
Structural biology
Chaperone (protein)
Foldase
biological sciences
biology.protein
Biophysics
bacteria
CLPB
030217 neurology & neurosurgery
Function (biology)
Subjects
Details
- ISSN :
- 22111247
- Volume :
- 35
- Issue :
- 8
- Database :
- OpenAIRE
- Journal :
- Cell reports
- Accession number :
- edsair.doi.dedup.....a2e363c3a57bf9c7367b4d17308ae61d