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Structural basis for substrate gripping and translocation by the ClpB AAA+ disaggregase.

Alexandrea N Rizo | JiaBei Lin | Stephanie N Gates | Eric Tse | Stephen M Bart | Laura M Castellano | Frank DiMaio | James Shorter | Daniel R Southworth
Nature communications | 2019

Bacterial ClpB and yeast Hsp104 are homologous Hsp100 protein disaggregases that serve critical functions in proteostasis by solubilizing protein aggregates. Two AAA+ nucleotide binding domains (NBDs) power polypeptide translocation through a central channel comprised of a hexameric spiral of protomers that contact substrate via conserved pore-loop interactions. Here we report cryo-EM structures of a hyperactive ClpB variant bound to the model substrate, casein in the presence of slowly hydrolysable ATPγS, which reveal the translocation mechanism. Distinct substrate-gripping interactions are identified for NBD1 and NBD2 pore loops. A trimer of N-terminal domains define a channel entrance that binds the polypeptide substrate adjacent to the topmost NBD1 contact. NBD conformations at the seam interface reveal how ATP hydrolysis-driven substrate disengagement and re-binding are precisely tuned to drive a directional, stepwise translocation cycle.

Pubmed ID: 31160557

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM099836
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM123089
  • Agency: U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences (NIGMS), International
    Id: R01GM099836

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