In this article, we describe single-molecule assays using magnetic traps and we applied these assays to topoisomerase enzymes which unwind and disentangle DNA molecules. First, the elasticity of single DNA molecule is characterized using the magnetic trap. We show that a twisting constraint may be easily applied and that its effect upon DNA may be measured accurately. Then we describe how the topoisomerase activity may be observed at the single-molecule level giving direct access to the important biological parameters of the enzyme such as velocity and processivity. Furthermore, individual cycles of unwinding can be observed in real time. This permits an accurate characterization of the enzyme's biochemical cycle. The data treatment require...
Inspired by biological motors, artificially designed molecular motors were developed in recent years...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
This thesis describes a series of single-molecule experiments aimed at understanding the physical pr...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
AbstractThe action of individual type II DNA topoisomerases has been followed in real time by observ...
Jury : M. David BENSIMON Directeur de thèse M. Didier CHATENAY M. Michel DUGUET Invité M. Olivier HY...
Abstract. The development of tools to manipulate single biomolecules has opened a new vista on the s...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
International audienceHelicases and translocases are proteins that use the energy derived from ATP h...
The application of forces and torques on the single molecule level has transformed our understanding...
Topoisomerases are essential enzymes that regulate DNA topology. Type 1A family topoisomerases are f...
A high-sensitivity assay has been developed for the detection of human topoisomerase I with single m...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
Type IIA DNA topoisomerases are complex molecular nanomachines that manage topological states of the...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
Inspired by biological motors, artificially designed molecular motors were developed in recent years...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
This thesis describes a series of single-molecule experiments aimed at understanding the physical pr...
The recent development of new techniques to manipulate single DNA molecules has opened new opportuni...
AbstractThe action of individual type II DNA topoisomerases has been followed in real time by observ...
Jury : M. David BENSIMON Directeur de thèse M. Didier CHATENAY M. Michel DUGUET Invité M. Olivier HY...
Abstract. The development of tools to manipulate single biomolecules has opened a new vista on the s...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
International audienceHelicases and translocases are proteins that use the energy derived from ATP h...
The application of forces and torques on the single molecule level has transformed our understanding...
Topoisomerases are essential enzymes that regulate DNA topology. Type 1A family topoisomerases are f...
A high-sensitivity assay has been developed for the detection of human topoisomerase I with single m...
The double helical nature of DNA links many cellular processes such as DNA replication, transcriptio...
Type IIA DNA topoisomerases are complex molecular nanomachines that manage topological states of the...
Human topoisomerase I is a group of enzyme that is responsible for the interconversions of different...
Inspired by biological motors, artificially designed molecular motors were developed in recent years...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
This thesis describes a series of single-molecule experiments aimed at understanding the physical pr...