Literature DB >> 15252618

Total enantioselectivity in the DNA binding of the dinuclear ruthenium(II) complex [[Ru(Me2bpy)2]2(mu-bpm)]4+ [bpm = 2,2'-bipyrimidine; Me2bpy = 4,4'-dimethyl-2,2'-bipyridine].

Jayden A Smith1, J Grant Collins, Bradley T Patterson, F Richard Keene.   

Abstract

The binding of the three stereoisomers (DeltaDelta-, LambdaLambda- and DeltaLambda-) of the dinuclear ruthenium(II) complex [[Ru(Me2bpy)2]2(mu-bpm)]4+ [Me2bpy = 4,4'-dimethyl-2,2'-bipyridine; bpm = 2,2'-bipyrimidine] to a tridecanucleotide containing a single adenine bulge has been studied by 1H NMR spectroscopy. The addition of the DeltaDelta-isomer to d(CCGAGAATTCCGG)2 induced significant chemical shift changes for the base and sugar resonances of the residues at the bulge site (G3A4G5/C11C10), whereas small shifts were observed upon addition of the enantiomeric LambdaLambda-form. NOESY spectra of the tridecanucleotide bound with the DeltaDelta-isomer revealed intermolecular NOE's between the metal complex and the nucleotide residues at the bulge site, while only weak NOE's were observed to terminal residues to the LambdaLambda-form. Competitive binding studies were performed where both enantiomers were simultaneously added to the tridecanucleotide, and for all ratios of the two stereoisomers the DeltaDelta-isomer remained selectively bound at the bulge site with the LambdaLambda-enantiomer localised at the terminal regions of the tridecanucleotide. The meso-diastereoisomer (DeltaLambda) was found to bind to the tridecanucleotide with characteristics intermediate between the DeltaDelta- and LambdaLambda-enantiomers of the rac form. Two distinct sets of metal complex resonances were observed, with one set having essentially the same shift as the free metal complex, whilst the other set of resonances exhibited significant shifts. The NOE data indicated that the meso-diastereoisomer does not bind as selectively as the DeltaDelta-isomer, with NOE's observed to a greater number of nucleotide residues compared to the DeltaDelta-form. This study provides a rare example of total enantioselectivity in the binding of an inert transition metal complex to DNA, produced by the shape recognition of both ruthenium(II) centres.

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Year:  2004        PMID: 15252618     DOI: 10.1039/b316197h

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  5 in total

1.  Enantioseparations of Chiral Ruthenium(II) Polypyridyl Complexes Using HPLC with Macrocyclic Glycopeptide Chiral Stationary Phases (CSPs).

Authors:  Ping Sun; Arthi Krishnan; Abhishek Yadav; Frederick M MacDonnell; Daniel W Armstrong
Journal:  J Mol Struct       Date:  2008-11-12       Impact factor: 3.196

2.  Selectivity at a three-base bulge site in the DNA binding of DeltaDelta-[{Ru(phen)2} 2(mu-dppm)]4+ [dppm is 4,6-bis(2-pyridyl)pyrimidine; phen is 1,10-phenanthroline].

Authors:  Joy L Morgan; Damian P Buck; Adam G Turley; J Grant Collins; F Richard Keene
Journal:  J Biol Inorg Chem       Date:  2006-06-28       Impact factor: 3.358

3.  Enantioselective Host-Guest Complexation of Ru(II) trisdiimine complexes using neutral and anionic derivatized cyclodextrins.

Authors:  Ping Sun; Frederick M Macdonnell; Daniel W Armstrong
Journal:  Inorganica Chim Acta       Date:  2009-07-01       Impact factor: 2.545

4.  DNA affinity binding studies using a fluorescent dye displacement technique: the dichotomy of the binding site.

Authors:  Caitriona B Spillane; Jayden A Smith; Joy L Morgan; F Richard Keene
Journal:  J Biol Inorg Chem       Date:  2007-05-08       Impact factor: 3.358

5.  Homochiral D4-symmetric metal-organic cages from stereogenic Ru(II) metalloligands for effective enantioseparation of atropisomeric molecules.

Authors:  Kai Wu; Kang Li; Ya-Jun Hou; Mei Pan; Lu-Yin Zhang; Ling Chen; Cheng-Yong Su
Journal:  Nat Commun       Date:  2016-02-03       Impact factor: 14.919

  5 in total

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