SummaryClpX, a AAA+ ring homohexamer, uses the energy of ATP binding and hydrolysis to power conformational changes that unfold and translocate target proteins into the ClpP peptidase for degradation. In multiple crystal structures, some ClpX subunits adopt nucleotide-loadable conformations, others adopt unloadable conformations, and each conformational class exhibits substantial variability. Using mutagenesis of individual subunits in covalently tethered hexamers together with fluorescence methods to assay the conformations and nucleotide-binding properties of these subunits, we demonstrate that dynamic interconversion between loadable and unloadable conformations is required to couple ATP hydrolysis by ClpX to mechanical work. ATP binding...
Molecular motors transduce chemical energy –usually from ATP hydrolysis– into directed motion and me...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
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 protein unfolding and translocat...
The hexameric AAA+ ring of Escherichia coli ClpX, an ATP-dependent machine for protein unfolding and...
In the E. coli ClpXP protease, a hexameric ClpX ring couples ATP binding and hydrolysis to mechanica...
SummaryClpX is a AAA+ machine that uses the energy of ATP binding and hydrolysis to unfold native pr...
© 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 ...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
AbstractClpXP is a AAA+ protease that uses the energy of ATP binding and hydrolysis to perform mecha...
The ClpXP protease plays important roles in protein homeostasis and quality control. ClpX is a ring-...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
Molecular motors transduce chemical energy –usually from ATP hydrolysis– into directed motion and me...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
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 protein unfolding and translocat...
The hexameric AAA+ ring of Escherichia coli ClpX, an ATP-dependent machine for protein unfolding and...
In the E. coli ClpXP protease, a hexameric ClpX ring couples ATP binding and hydrolysis to mechanica...
SummaryClpX is a AAA+ machine that uses the energy of ATP binding and hydrolysis to unfold native pr...
© 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 ...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
AbstractClpXP is a AAA+ protease that uses the energy of ATP binding and hydrolysis to perform mecha...
The ClpXP protease plays important roles in protein homeostasis and quality control. ClpX is a ring-...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
ATPases of the AAA+ superfamily are large oligomeric molecular machines that remodel their substrate...
Molecular motors transduce chemical energy –usually from ATP hydrolysis– into directed motion and me...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...
Members of the family of ATPases associated with various cellular activities (AAA+) typically form h...