Pore loops of the AAA+ ClpX machine grip substrates to drive t...

Collect this paper and discover other ones on Labmeeting. Learn more.
- Hide Abstract
Proteolytic AAA+ unfoldases use ATP hydrolysis to power conformational changes that mechanically denature protein substrates and then translocate the polypeptide through a narrow pore into a degradation chamber. We show that a tyrosine residue in a pore loop of the hexameric ClpX unfoldase links ATP hydrolysis to mechanical work by gripping substrates during unfolding and translocation. Removal of the aromatic ring in even a few ClpX subunits results in slippage, frequent failure to denature the substrate and an enormous increase in the energetic cost of substrate unfolding. The tyrosine residue is part of a conserved aromatic-hydrophobic motif, and the effects of mutations in both residues vary with the nucleotide state of the resident subunit. These results support a model in which nucleotide-dependent conformational changes in these pore loops drive substrate translocation and unfolding, with the aromatic ring transmitting force to the polypeptide substrate.
Nature structural & molecular biology 15(11):1147-51, 2008 NovWho cited this? | PubMed ID: 18931677 | Fulltext


+ Click Here for Related Papers


Join Labmeeting

  • Organize and search your PDF collection
  • Collect papers
  • Search millions of papers
  • Keep up to date with paper alerts
  • Read your papers from anywhere
  • Recommend papers to colleagues
  • Manage your lab

Join Labmeeting

Labmeeting is a web service for researchers. Sign up with your academic email address.

Individuals or corporations not affiliated with an academic institution can request a trial subscription.


Sponsored Product



Got a question?
The Labmeeting Network
has the answer.
Ask scientists at top universities like Harvard, Stanford, and MIT for their expert opinion!