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Controlled dehydration of a ruthenium complex-DNA crystal induces reversible DNA kinking.

Authors :
Hall JP
Sanchez-Weatherby J
Alberti C
Quimper CH
O'Sullivan K
Brazier JA
Winter G
Sorensen T
Kelly JM
Cardin DJ
Cardin CJ
Source :
Journal of the American Chemical Society [J Am Chem Soc] 2014 Dec 17; Vol. 136 (50), pp. 17505-12. Date of Electronic Publication: 2014 Dec 03.
Publication Year :
2014

Abstract

Hydration-dependent DNA deformation has been known since Rosalind Franklin recognized that the relative humidity of the sample had to be maintained to observe a single conformation in DNA fiber diffraction. We now report for the first time the crystal structure, at the atomic level, of a dehydrated form of a DNA duplex and demonstrate the reversible interconversion to the hydrated form at room temperature. This system, containing d(TCGGCGCCGA) in the presence of Λ-[Ru(TAP)2(dppz)](2+) (TAP = 1,4,5,8-tetraazaphenanthrene, dppz = dipyrido[3,2-a:2',3'-c]phenazine), undergoes a partial transition from an A/B hybrid to the A-DNA conformation, at 84-79% relative humidity. This is accompanied by an increase in kink at the central step from 22° to 51°, with a large movement of the terminal bases forming the intercalation site. This transition is reversible on rehydration. Seven data sets, collected from one crystal at room temperature, show the consequences of dehydration at near-atomic resolution. This result highlights that crystals, traditionally thought of as static systems, are still dynamic and therefore can be the subject of further experimentation.

Details

Language :
English
ISSN :
1520-5126
Volume :
136
Issue :
50
Database :
MEDLINE
Journal :
Journal of the American Chemical Society
Publication Type :
Academic Journal
Accession number :
25393319
Full Text :
https://doi.org/10.1021/ja508745x