SummaryIn the axial channels of ClpX and related hexameric AAA+ protein-remodeling rings, the pore-1 loops are thought to play important roles in engaging, mechanically unfolding, and translocating protein substrates. How these loops perform these functions and whether they also prevent substrate dissociation to ensure processive degradation by AAA+ proteases are open questions. Using ClpX pore-1-loop variants, single-molecule force spectroscopy, and ensemble assays, we find that the six pore-1 loops function synchronously to grip and unfold protein substrates during a power stroke but are not important in preventing substrate slipping between power strokes. The importance of grip strength is task dependent. ClpX variants with multiple muta...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, February 2013.Cataloged fr...
<div><p>Clp ATPases are powerful ring shaped nanomachines which participate in the degradation pathw...
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...
In the axial channels of ClpX and related hexameric AAA+ protein-remodeling rings, the pore-1 loops ...
In the axial channels of ClpX and related hexameric AAA+ protein-remodeling rings, the pore-1 loops ...
SummaryAll cells employ ATP-powered proteases for protein-quality control and regulation. In the Clp...
Hexameric ATP-dependent proteases and protein remodeling machines use conserved loops that line the ...
SummaryATP-dependent proteases are vital to maintain cellular protein homeostasis. Here, we study th...
SummaryClpXP and other AAA+ proteases recognize, mechanically unfold, and translocate target protein...
Most AAA+ remodeling motors denature proteins by pulling on the peptide termini of folded substrates...
AAA+ proteases and remodeling machines couple hydrolysis of ATP to mechanical unfolding and transloc...
ClpAP, an ATP-dependent protease consisting of ClpA, a double-ring hexameric unfoldase of the ATPase...
AbstractClpAP, a two-ring AAA+ protease, degrades N-end-rule proteins bound by the ClpS adaptor. Her...
Molecular machines containing double or single AAA+ rings power energy-dependent protein degradation...
Protein degradation by the ClpXP protease requires collaboration among the six AAA+ domains of ClpX....
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, February 2013.Cataloged fr...
<div><p>Clp ATPases are powerful ring shaped nanomachines which participate in the degradation pathw...
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...
In the axial channels of ClpX and related hexameric AAA+ protein-remodeling rings, the pore-1 loops ...
In the axial channels of ClpX and related hexameric AAA+ protein-remodeling rings, the pore-1 loops ...
SummaryAll cells employ ATP-powered proteases for protein-quality control and regulation. In the Clp...
Hexameric ATP-dependent proteases and protein remodeling machines use conserved loops that line the ...
SummaryATP-dependent proteases are vital to maintain cellular protein homeostasis. Here, we study th...
SummaryClpXP and other AAA+ proteases recognize, mechanically unfold, and translocate target protein...
Most AAA+ remodeling motors denature proteins by pulling on the peptide termini of folded substrates...
AAA+ proteases and remodeling machines couple hydrolysis of ATP to mechanical unfolding and transloc...
ClpAP, an ATP-dependent protease consisting of ClpA, a double-ring hexameric unfoldase of the ATPase...
AbstractClpAP, a two-ring AAA+ protease, degrades N-end-rule proteins bound by the ClpS adaptor. Her...
Molecular machines containing double or single AAA+ rings power energy-dependent protein degradation...
Protein degradation by the ClpXP protease requires collaboration among the six AAA+ domains of ClpX....
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, February 2013.Cataloged fr...
<div><p>Clp ATPases are powerful ring shaped nanomachines which participate in the degradation pathw...
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...