SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP degradation. Although ClpX is a homohexamer, positive and negative allosteric interactions partition six potential nucleotide binding sites into three classes with asymmetric properties. Some sites release ATP rapidly, others release ATP slowly, and at least two sites remain nucleotide free. Recognition of the degradation tag of protein substrates requires ATP binding to one set of sites and ATP or ADP binding to a second set of sites, suggesting a mechanism that allows repeated unfolding attempts without substrate release over multiple ATPase cycles. Our results rule out concerted hydrolysis models involving ClpX6•ATP6 or ClpX6•ADP6 and high...
SummaryClpXP and other AAA+ proteases recognize, mechanically unfold, and translocate target protein...
Protein degradation by the ClpXP protease requires collaboration among the six AAA+ domains of ClpX....
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...
SummaryClpX is a AAA+ machine that uses the energy of ATP binding and hydrolysis to unfold native pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The hexameric AAA+ ring of Escherichia coli ClpX, an ATP-dependent machine for protein unfolding and...
The ClpXP protease assembles in a reaction in which an ATP-bound ring hexamer of ClpX binds to one o...
© 2020, eLife Sciences Publications Ltd. All rights reserved. ClpXP is an ATP-dependent protease in ...
© 2020, eLife Sciences Publications Ltd. All rights reserved. ClpXP is an ATP-dependent protease in ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, February 2006.Includes bib...
SummaryClpX, a AAA+ ring homohexamer, uses the energy of ATP binding and hydrolysis to power conform...
SummaryATP-dependent proteases are vital to maintain cellular protein homeostasis. Here, we study th...
The hexameric AAA+ ring of Escherichia. coli ClpX, an ATP-dependent protein unfolding and translocat...
AAA+ ATPase protein machines use the power obtained from ATP hydrolysis to remodel macromolecular as...
SummaryAll cells employ ATP-powered proteases for protein-quality control and regulation. In the Clp...
SummaryClpXP and other AAA+ proteases recognize, mechanically unfold, and translocate target protein...
Protein degradation by the ClpXP protease requires collaboration among the six AAA+ domains of ClpX....
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...
SummaryClpX is a AAA+ machine that uses the energy of ATP binding and hydrolysis to unfold native pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The hexameric AAA+ ring of Escherichia coli ClpX, an ATP-dependent machine for protein unfolding and...
The ClpXP protease assembles in a reaction in which an ATP-bound ring hexamer of ClpX binds to one o...
© 2020, eLife Sciences Publications Ltd. All rights reserved. ClpXP is an ATP-dependent protease in ...
© 2020, eLife Sciences Publications Ltd. All rights reserved. ClpXP is an ATP-dependent protease in ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, February 2006.Includes bib...
SummaryClpX, a AAA+ ring homohexamer, uses the energy of ATP binding and hydrolysis to power conform...
SummaryATP-dependent proteases are vital to maintain cellular protein homeostasis. Here, we study th...
The hexameric AAA+ ring of Escherichia. coli ClpX, an ATP-dependent protein unfolding and translocat...
AAA+ ATPase protein machines use the power obtained from ATP hydrolysis to remodel macromolecular as...
SummaryAll cells employ ATP-powered proteases for protein-quality control and regulation. In the Clp...
SummaryClpXP and other AAA+ proteases recognize, mechanically unfold, and translocate target protein...
Protein degradation by the ClpXP protease requires collaboration among the six AAA+ domains of ClpX....
AbstractProteolytic machines powered by ATP hydrolysis bind proteins with specific peptide tags, den...