AAA+ ATPases constitute a large family of proteins that are involved in a plethora of cellular processes including DNA disassembly, protein degradation and protein complex disassembly. They typically form a hexametric ring-shaped structure with six subunits in a (pseudo) 6-fold symmetry. In a subset of AAA+ ATPases that facilitate protein unfolding and degradation, six subunits cooperate to translocate protein substrates through a central pore in the ring. The number and type of nucleotides in an AAA+ ATPase hexamer is inherently linked to the mechanism that underlies cooperation among subunits and couples ATP hydrolysis with substrate translocation. We conducted a native MS study of a monodispersed form of PAN, an archaeal proteasome AAA+ ...
AAA+ ATPases are ubiquitous hexameric unfoldases acting in cellular protein quality control. In comp...
Ring-shaped unfoldases of the AAA+ (ATPases Associated with a variety of cellular Activities) su- pe...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
SummaryIn the eukaryotic 26S proteasome, the 20S particle is regulated by six AAA ATPase subunits an...
In Archaea, an hexameric ATPase complex termed PAN promotes proteins unfolding and translocation int...
The proteasome as the major cellular protease plays a central role in regulated protein deg-radation...
Across all domains of life, the proteasome is responsible for the majority of targeted protein degra...
AbstractThe 26S proteasome is a chambered protease in which the majority of selective cellular prote...
The 26S proteasome is a 2.5-MDa, ATP-dependent multisubunit proteolytic complex that processively de...
The proteasome is the central machinery for targeted protein degradation in archaea, Actinobacteria,...
In eukaryotic cells, the ubiquitin-proteasome system (UPS) is responsible for the regulated degradat...
Background: The 26S proteasome contains six highly related ATPases of the AAA family. We have develo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The 26S proteasome is an integral element of the ubiquitin-proteasome system(UPS) and, as such, resp...
AbstractThe AAA+ superfamily of proteins is a class of motor ATPases performing a wide range of func...
AAA+ ATPases are ubiquitous hexameric unfoldases acting in cellular protein quality control. In comp...
Ring-shaped unfoldases of the AAA+ (ATPases Associated with a variety of cellular Activities) su- pe...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...
SummaryIn the eukaryotic 26S proteasome, the 20S particle is regulated by six AAA ATPase subunits an...
In Archaea, an hexameric ATPase complex termed PAN promotes proteins unfolding and translocation int...
The proteasome as the major cellular protease plays a central role in regulated protein deg-radation...
Across all domains of life, the proteasome is responsible for the majority of targeted protein degra...
AbstractThe 26S proteasome is a chambered protease in which the majority of selective cellular prote...
The 26S proteasome is a 2.5-MDa, ATP-dependent multisubunit proteolytic complex that processively de...
The proteasome is the central machinery for targeted protein degradation in archaea, Actinobacteria,...
In eukaryotic cells, the ubiquitin-proteasome system (UPS) is responsible for the regulated degradat...
Background: The 26S proteasome contains six highly related ATPases of the AAA family. We have develo...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, February 2015.This ele...
The 26S proteasome is an integral element of the ubiquitin-proteasome system(UPS) and, as such, resp...
AbstractThe AAA+ superfamily of proteins is a class of motor ATPases performing a wide range of func...
AAA+ ATPases are ubiquitous hexameric unfoldases acting in cellular protein quality control. In comp...
Ring-shaped unfoldases of the AAA+ (ATPases Associated with a variety of cellular Activities) su- pe...
SummaryATP hydrolysis by AAA+ ClpX hexamers powers protein unfolding and translocation during ClpXP ...