G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes and telomeres. Here, the G4 formation decreases the replicative DNA at each cell cycle, finally leading to apoptosis. The ability to control this mitotic clock, particularly in cancer cells, is fascinating and passes through a rational understanding of the ligand/G4 interaction. We demonstrate that an accurate description of the ligand/G4 binding mechanism is possible using an innovative free-energy method called funnel-metadynamics (FM), which we have recently developed to investigate ligand/protein interaction. Using FM simulations, we have elucidated the binding mechanism of the anticancer alkaloid berberine to the human telomeric G4 (d[AG...
G-quadruplex (or G4 DNA) specific ligands are important potential anticancer molecules as telomerase...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
Telomeres are DNA-proteins complexes which protect the ends of human chromosomes. Telomeric DNA cons...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
none5siSpecific guanine-rich regions in human genome can form higher-order DNA structures called G-q...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
G-quadruplex (or G4 DNA) specific ligands are important potential anticancer molecules as telomerase...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes ...
Telomeres are DNA-proteins complexes which protect the ends of human chromosomes. Telomeric DNA cons...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
none5siSpecific guanine-rich regions in human genome can form higher-order DNA structures called G-q...
Specific guanine-rich regions in human genome can form higher-order DNA structures called G-quadrupl...
G-quadruplex (or G4 DNA) specific ligands are important potential anticancer molecules as telomerase...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...
Free ligand binding molecular dynamic simulations are a powerful tool used to probe the ligand bindi...