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Sequence-dependent conformations of DNA duplexes: The TATA segment of the d(G-G-T-A-T-A-C-C) duplex in aqueous solution

✍ Scribed by Dinshaw J. Patel; Lawrence Shapiro; Dennis Hare


Publisher
Wiley (John Wiley & Sons)
Year
1986
Tongue
English
Weight
633 KB
Volume
25
Category
Article
ISSN
0006-3525

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✦ Synopsis


The base and sugar protons of the d(G-G-T-A-T-A-GC) duplex have been assigned from two-dimensional correlated (COSY) and nuclear Overhauser effect (NOESY) measurements in D 2 0 solution at 25Β°C. The nucleic acid protons have been assigned from NOEs between protons on adjacent bases on the same and partner strands, as well as from NOEs between the base protons and their own and 5-flanking Hl', HZ, H2", H3', and H 4 sugar protons. These assignments are confirmed from coupling constant and NOE connectivities within the sugar protons of a given residue. Several of these NOEs exhibit directionality and demonstrate that the d(G-G-T-A-T-A-GC) duplex is a right-handed helix. The relative magnitude of the NOEs between the base protons and the sugar H 2 protons of its own and B'-flanking sugar demonstrate that the TATA segment of the d(GG-T-A-FAGC) duplex adopts a RDNA type helix geometry in solution, in contrast to the previous observation of a A-type helix for the same octanucleotide duplex in the crystalline state.


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