Alessandro AltieriAntonello AlvinoStephan A. OhnmachtGiancarlo OrtaggiStephen NeidleDaniele NocioniMarco FranceschinArmandodoriano Bianco
Following previous studies on anthraquinone and acridine-based G-quadruplex ligands, here we present a study of similar aromatic cores, with the specific aim of increasing G-quadruplex binding and selectivity with respect to duplex DNA. Synthesized compounds include two and three-side chain xanthone and xanthene derivatives, as well as a dimeric “bridged” form. ESI and FRET measurements suggest that all the studied molecules are good G-quadruplex ligands, both at telomeres and on G-quadruplex forming sequences of oncogene promoters. The dimeric compound and the three-side chain xanthone derivative have been shown to represent the best compounds emerging from the different series of ligands presented here, having also high selectivity for G-quadruplex structures with respect to duplex DNA. Molecular modeling simulations are in broad agreement with the experimental data.
Wanjin ZhangTian‐Miao OuYu‐Jing LuYingyu HuangWeibin WuZhi‐Shu HuangJin-Lin ZhouKwok‐Yin WongLian‐Quan Gu
Boqiao FuJing HuangLige RenXiaocheng WengYangyang ZhouYuhao DuXiaojun WuXiang ZhouGuang‐Fu Yang
Rui ShenXiangyü LiYuhong ChenAi‐Hong YangXiaodi Kou
Souvik SurVinod TiwariD. K. SinhaMohammad Zahid KamranKshatresh Dutta DubeyGopinatha Suresh KumarVibha Tandon
Souvik Sur (1786465)Vinod Tiwari (120623)Devapriya Sinha (1786456)Mohammad Zahid Kamran (3840622)Kshatresh Dutta Dubey (1583317)Gopinatha Suresh Kumar (161376)Vibha Tandon (120634)