AbstractThe structure and hydration of reconstituted human topoisomerase I comprising the core and the carboxyl-terminal domains in covalent complex with 22-basepair DNA duplex has been investigated by molecular dynamics simulation. The structure and the intermolecular interactions were found to be well maintained over the simulation. The complex displays a high degree of flexibility of the contact area, confirmed by the presence of numerous water-mediated protein-DNA hydrogen bonds comparable in quantity and distribution to the direct ones. The interaction between the enzyme and the solvent also provides the key for interpreting the experimental reduction of activity or affinity observed upon single residue mutation. Finally, four long las...
AbstractThe results of a 3-ns molecular dynamics simulation of the dodecamer duplex d(TATGGATCCATA)2...
supercoiled DNA reveal changes in the flexibility pattern of the enzyme and a secondary protein–DNA ...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
AbstractThe structure and hydration of reconstituted human topoisomerase I comprising the core and t...
The open state of human topoisomerase I has been probed by molecular dynamics simulation, starting f...
The influence of the N-terminal residues 203-214 and the linker domain on motions in the human topoi...
The collective motions of the core and C-terminal domains of human topoisomerase I (topo I) have bee...
AbstractThe influence of the N-terminal residues 203–214 and the linker domain on motions in the hum...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
The functional and dynamical properties of the human topoisomerase I Thr718Ala mutant have been comp...
The influence of the N-terminal residues 203–214 and the linker domain on motions in the human topoi...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
A molecular dynamics simulation of the Deinococcus radiodurans topoisomerase IB crystallized in abse...
SummaryTopoisomerase V is an archaeal type I topoisomerase that is unique among topoisomerases due t...
AbstractThe results of a 3-ns molecular dynamics simulation of the dodecamer duplex d(TATGGATCCATA)2...
supercoiled DNA reveal changes in the flexibility pattern of the enzyme and a secondary protein–DNA ...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
AbstractThe structure and hydration of reconstituted human topoisomerase I comprising the core and t...
The open state of human topoisomerase I has been probed by molecular dynamics simulation, starting f...
The influence of the N-terminal residues 203-214 and the linker domain on motions in the human topoi...
The collective motions of the core and C-terminal domains of human topoisomerase I (topo I) have bee...
AbstractThe influence of the N-terminal residues 203–214 and the linker domain on motions in the hum...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...
The functional and dynamical properties of the human topoisomerase I Thr718Ala mutant have been comp...
The influence of the N-terminal residues 203–214 and the linker domain on motions in the human topoi...
Topoisomerases are enzymes of quintessence to the upkeep of superhelical DNA, and are vital for repl...
A molecular dynamics simulation of the Deinococcus radiodurans topoisomerase IB crystallized in abse...
SummaryTopoisomerase V is an archaeal type I topoisomerase that is unique among topoisomerases due t...
AbstractThe results of a 3-ns molecular dynamics simulation of the dodecamer duplex d(TATGGATCCATA)2...
supercoiled DNA reveal changes in the flexibility pattern of the enzyme and a secondary protein–DNA ...
Human topoisomerase 1B has been simulated covalently bound to a negatively supercoiled DNA minicircl...