Toward a Structure−Activity Relationship for Apoptolidin: Selective Functionalization of the Hydroxyl Group Array
摘要:
[GRAPHICS]To investigate the structural basis for the exceptional selectivity and activity of apoptolidin (1), a strategy has been devised that allows for selective functionalization of seven of its eight hydroxyl groups based on progressive silyl protection, derivatization, and deprotection. The syntheses of these derivatives and their ability to inhibit F0F1-ATPase are reported.
Toward a Structure−Activity Relationship for Apoptolidin: Selective Functionalization of the Hydroxyl Group Array
摘要:
[GRAPHICS]To investigate the structural basis for the exceptional selectivity and activity of apoptolidin (1), a strategy has been devised that allows for selective functionalization of seven of its eight hydroxyl groups based on progressive silyl protection, derivatization, and deprotection. The syntheses of these derivatives and their ability to inhibit F0F1-ATPase are reported.