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Stabilization of DNA triple helices by a series of mono- and disubstituted amidoanthraquinones.

作者信息

Keppler M D, Read M A, Perry P J, Trent J O, Jenkins T C, Reszka A P, Neidle S, Fox K R

机构信息

Division of Biochemistry, School of Biological Sciences, University of Southampton, UK.

出版信息

Eur J Biochem. 1999 Aug;263(3):817-25. doi: 10.1046/j.1432-1327.1999.00566.x.

DOI:10.1046/j.1432-1327.1999.00566.x
PMID:10469146
Abstract

We have used quantitative DNase I footprinting to measure the relative affinities of four disubstituted and two monosubstituted amidoanthraquinone compounds for intermolecular DNA triplexes, and have examined how the position of the attached base-functionalized substituents affects their ability to stabilize DNA triplexes. All four isomeric disubstituted derivatives examined stabilize DNA triplexes at micromolar or lower concentrations. Of the compounds studied the 2,7-disubstituted amidoanthraquinone displayed the greatest triplex affinity. The order of triplex affinity for the other disubstituted ligands decreases in the order 2,7 > 1,8 = 1,5 > 2,6, with the equivalent monosubstituted compounds being at least an order of magnitude less efficient. The 1,5-disubstituted derivative also shows some interaction with duplex DNA. These results have been confirmed by molecular modelling studies, which provide a rational basis for the structure-activity relationships. These suggest that, although all of the compounds bind through an intercalative mode, the 2,6, 2,7 and 1,5 disubstituted isomers bind with their two side groups occupying adjacent triplex grooves, in contrast with the 1,8 isomer which is positioned with both side groups in the same triplex groove.

摘要

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