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Enantioselective interactions of inversion-labile trigonal iron(II) complexes upon binding to DNA
Authors:Torleif Hrd  Bengt Nordn
Institution:Torleif Härd,Bengt Nordén
Abstract:We studied the interactions of the substitution-inert inversion-labile complexes Fe(bipy)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-1 and Fe(phen)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-2 and the inversion-stable complex Ru(bipy)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-3] with DNA. The association of these complexes to DNA is mainly electrostatic, and Fe(phen)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-4 shows a more effective binding to DNA than the two bipyridyl complexes, possibly owing to a different binding mode. The interactions are enantioselective, leading to a Pfeiffer shift in the diastereomeric inversion equilibria and an excess of the Δ-enantiomer of Fe(phen)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-5 and Fe(bipy)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-6, which is directly monitorable through CD. The partition constants for the inversion equilibrium range from 1.3 to 2.0 for Fe(bipy)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-7 and Fe(phen)urn:x-wiley:00063525:media:BIP360250704:tex2gif-stack-8, depending on ionic conditions. From flow LD information about the orientation of the complexes on DNA was obtained: it is consistent with a fit of the Δ-enantiomer in the major groove of the right-handed DNA helix. The mechanisms of interaction are discussed against equilibrium, spectroscopic, and kinetic data.
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