1 research outputs found
Endowing Indole-Based Tubulin Inhibitors with an Anchor for Derivatization: Highly Potent 3āSubstituted Indolephenstatins and Indoleisocombretastatins
Colchicine site ligands with indole
B rings are potent tubulin
polymerization inhibitors. Structural modifications at the indole
3-position of 1-methyl-5-indolyl-based isocombretastatins (1,1-diarylethenes)
and phenstatins endowed them with anchors for further derivatization
and resulted in highly potent compounds. The substituted derivatives
displayed potent cytotoxicity against several human cancer cell lines
due to tubulin inhibition, as shown by cell cycle analysis, confocal
microscopy, and tubulin polymerization inhibitory activity studies
and promoted cell killing mediated by caspase-3 activation. Binding
at the colchicine site was confirmed by means of fluorescence measurements
of MTC displacement. Molecular modeling suggests that the tropolone-binding
region of the colchicine site of tubulin can adapt to hosting small
polar substituents. Isocombretastatins accepted substitutions better
than phenstatins, and the highest potencies were achieved for the
cyano and hydroxyiminomethyl substituents, with TPI values in the
submicromolar range and cytotoxicities in the subnanomolar range.
A 3,4,5-trimethoxyphenyl ring usually afforded more potent derivatives
than a 2,3,4-trimethoxyphenyl ring