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Structure Determination of an Ag<sup>I</sup>‐Mediated Cytosine–Cytosine Base Pair within DNA Duplex in Solution with <sup>1</sup>H/<sup>15</sup>N/<sup>109</sup>Ag NMR Spectroscopy
70
Citations
51
References
2016
Year
Nmr SpectroscopyDna AnalysisMolecular BiologyNucleic Acid ChemistryStructure DeterminationStructure ElucidationBiochemistryOligonucleotideDna ReplicationTriplet ResonancesMolecular ChemistrySolution Nmr SpectroscopyStructural BiologyDna DuplexCytosine–cytosine Base PairCytosine-cytosine Base PairNatural SciencesNucleic Acid BiochemistryMolecular ComplexMedicine
The structure of an Ag(I) -mediated cytosine-cytosine base pair, C-Ag(I) -C, was determined with NMR spectroscopy in solution. The observation of 1-bond (15) N-(109) Ag J-coupling ((1) J((15) N,(109) Ag): 83 and 84 Hz) recorded within the C-Ag(I) -C base pair evidenced the N3-Ag(I) -N3 linkage in C-Ag(I) -C. The triplet resonances of the N4 atoms in C-Ag(I) -C demonstrated that each exocyclic N4 atom exists as an amino group (-NH2 ), and any isomerization and/or N4-Ag(I) bonding can be excluded. The 3D structure of Ag(I) -DNA complex determined with NOEs was classified as a B-form conformation with a notable propeller twist of C-Ag(I) -C (-18.3±3.0°). The (109) Ag NMR chemical shift of C-Ag(I) -C was recorded for cytidine/Ag(I) complex (δ((109) Ag): 442 ppm) to completed full NMR characterization of the metal linkage. The structural interpretation of NMR data with quantum mechanical calculations corroborated the structure of the C-Ag(I) -C base pair.
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