AbstractType II topoisomerases (Topo II) are unique enzymes that change the DNA topology by catalyzing the passage of two double-strands across each other by using the energy from ATP hydrolysis. In vitro, human Topo II relaxes positive supercoiled DNA around 10-fold faster than negative supercoiled DNA. By using atomic force microscopy (AFM) we found that human Topo II binds preferentially to DNA cross-overs. Around 50% of the DNA crossings, where Topo II was bound to, presented an angle in the range of 80–90°, suggesting a favored binding geometry in the chiral discrimination by Topo II. Our studies with AFM also helped us visualize the dynamics of the unknotting action of Topo II in knotted molecules
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
Type IIA DNA topoisomerases are complex molecular nanomachines that manage topological states of the...
DNA topoisomerases control the topology of DNA. Type II topoisomerases exhibit topology simplificati...
Type II topoisomerases (Topo II) are unique enzymes that change the DNA topology by catalyzing the p...
AbstractType II topoisomerases (Topo II) are unique enzymes that change the DNA topology by catalyzi...
AFM; DNA topology; Human topoisomerase II; Binding geometry; Time-lapse imaging; Protein–DNA interac...
Topoisomerases are topological enzymes that are involved in the regulation of DNA supercoiling. In t...
Topoisomerases are a family of essential enzymes that disentangle chromosomes and manage DNA superco...
Topoisomerases are essential molecular machines that manage physical challenges presented by DNA top...
Type II DNA topoisomerases (topos) are essential and ubiquitous enzymes that perform important intra...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
AbstractEscherichia coli topoisomerase IV (Topo IV) is an essential ATP-dependent enzyme that unlink...
151 pagesType II topoisomerases, such as yeast topoisomerase II (topo II), have been increasingly de...
SummaryDNA topoisomerases resolve DNA topological problems created during transcription, replication...
AbstractType II topoisomerases are required for the management of DNA superhelicity and chromosome s...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
Type IIA DNA topoisomerases are complex molecular nanomachines that manage topological states of the...
DNA topoisomerases control the topology of DNA. Type II topoisomerases exhibit topology simplificati...
Type II topoisomerases (Topo II) are unique enzymes that change the DNA topology by catalyzing the p...
AbstractType II topoisomerases (Topo II) are unique enzymes that change the DNA topology by catalyzi...
AFM; DNA topology; Human topoisomerase II; Binding geometry; Time-lapse imaging; Protein–DNA interac...
Topoisomerases are topological enzymes that are involved in the regulation of DNA supercoiling. In t...
Topoisomerases are a family of essential enzymes that disentangle chromosomes and manage DNA superco...
Topoisomerases are essential molecular machines that manage physical challenges presented by DNA top...
Type II DNA topoisomerases (topos) are essential and ubiquitous enzymes that perform important intra...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
AbstractEscherichia coli topoisomerase IV (Topo IV) is an essential ATP-dependent enzyme that unlink...
151 pagesType II topoisomerases, such as yeast topoisomerase II (topo II), have been increasingly de...
SummaryDNA topoisomerases resolve DNA topological problems created during transcription, replication...
AbstractType II topoisomerases are required for the management of DNA superhelicity and chromosome s...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
Type IIA DNA topoisomerases are complex molecular nanomachines that manage topological states of the...
DNA topoisomerases control the topology of DNA. Type II topoisomerases exhibit topology simplificati...