SummaryGHL proteins are functionally diverse enzymes defined by the presence of a conserved ATPase domain that self-associates to trap substrate upon nucleotide binding. The structural states adopted by these enzymes during nucleotide hydrolysis and product release, and their consequences for enzyme catalysis, have remained unclear. Here, we have determined a complete structural map of the ATP turnover cycle for topoVI-B, the ATPase subunit of the archaeal GHL enzyme topoisomerase VI. With this ensemble of structures, we show that significant conformational changes in the subunit occur first upon ATP binding, and subsequently upon release of hydrolyzed Pi. Together, these data provide a structural framework for understanding the role of ATP...
Summaryp97 belongs to the superfamily of AAA+ ATPases and is characterized by a tandem AAA module, a...
Reverse gyrase is a peculiar DNA topoisomerase, specific of thermophilic microorganisms, which induc...
AbstractBackground: The bacterial heat shock locus HslU ATPase and HslV peptidase together form an A...
SummaryGHL proteins are functionally diverse enzymes defined by the presence of a conserved ATPase d...
Type IIA topoisomerases control DNA supercoiling and disentangle chromosomes by a complex, ATP-depen...
Type II topoisomerases help disentangle chromosomes to facilitate cell division. To advance understa...
Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of double-s...
AbstractBackground: The bacterial heat shock locus ATPase HslU is an AAA+ protein that has structure...
<div><p>Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of ...
AbstractA protein fold, six parallel β strands surrounding the central α helix, is likely to be a co...
Human topoisomerase II beta (TOP2B) modulates DNA topology using energy from ATP hydrolysis. To inve...
Human DNA topoisomerase IIα is a biological nanomachine that regulates the topological changes of th...
The structure of the nucleotide-free F1-ATPase from a thermoalkaliphilic bacterium presented in this...
Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of double-s...
SummaryTopoisomerase V is an archaeal type I topoisomerase that is unique among topoisomerases due t...
Summaryp97 belongs to the superfamily of AAA+ ATPases and is characterized by a tandem AAA module, a...
Reverse gyrase is a peculiar DNA topoisomerase, specific of thermophilic microorganisms, which induc...
AbstractBackground: The bacterial heat shock locus HslU ATPase and HslV peptidase together form an A...
SummaryGHL proteins are functionally diverse enzymes defined by the presence of a conserved ATPase d...
Type IIA topoisomerases control DNA supercoiling and disentangle chromosomes by a complex, ATP-depen...
Type II topoisomerases help disentangle chromosomes to facilitate cell division. To advance understa...
Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of double-s...
AbstractBackground: The bacterial heat shock locus ATPase HslU is an AAA+ protein that has structure...
<div><p>Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of ...
AbstractA protein fold, six parallel β strands surrounding the central α helix, is likely to be a co...
Human topoisomerase II beta (TOP2B) modulates DNA topology using energy from ATP hydrolysis. To inve...
Human DNA topoisomerase IIα is a biological nanomachine that regulates the topological changes of th...
The structure of the nucleotide-free F1-ATPase from a thermoalkaliphilic bacterium presented in this...
Type II DNA topoisomerases are essential enzymes that catalyze topological rearrangement of double-s...
SummaryTopoisomerase V is an archaeal type I topoisomerase that is unique among topoisomerases due t...
Summaryp97 belongs to the superfamily of AAA+ ATPases and is characterized by a tandem AAA module, a...
Reverse gyrase is a peculiar DNA topoisomerase, specific of thermophilic microorganisms, which induc...
AbstractBackground: The bacterial heat shock locus HslU ATPase and HslV peptidase together form an A...