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A novel PH-CT-COSY methodology for measuring JPH coupling constants in unlabeled nucleic acids. Application to HIV-2 TAR RNA
Authors:Teresa Carlomagno  Mirko Hennig  James R Williamson
Institution:(1) Biophysical Chemistry, Am Fassberg 11, D-37077 Goettingen, Germany;(2) Department of Molecular Biology and the Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Rd., La Jolla, CA, 92037, U.S.A
Abstract:A quantitative analysis of JPH scalar couplings in nucleic acids is difficult due to small couplings to phosphorus, the extreme overlap of the sugar protons and the fast relaxation of the spins involved in the magnetization transfer. Here we present a new methodology that relies on heteronuclear Constant Time Correlation Spectroscopy (CT-COSY). The three vicinal 3JPH3prime, 3JPH5prime and 3JPH5primeprime scalar couplings can be obtained by monitoring the intensity decay of the Pi-H3primei – 1 peak as a function of the constant time T in a 2D correlation map. The advantage of the new method resides in the possibility of measuring the two 3JPH5prime and 3JPH5primeprime scalar couplings even in the presence of overlapped H5prime/H5primeprime resonances, since the quantitative information is extracted from the intensity decay of the P-H3prime peak. Moreover, the relaxation of the H3prime proton is considerably slower than that of the H5prime/H5primeprime geminal protons and the commonly populated conformations of the phosphate backbone are associated with large 3JPH3prime couplings and relatively small 3JPH5prime / H5primeprime. These two facts lead to optimal signal-to-noise ratio for the P-H3prime correlation compared to the P-H5prime/H5primeprime correlation.The heteronuclear CT-COSY experiment is suitable for oligonucleotides in the 10–15 kDa molecular mass range and has been applied to the 30mer HIV-2 TAR RNA. The methodology presented here can be used to measure P-H dipolar couplings (DPH) as well. We will present qualitative results for the measurement of P-Hbase and P-H2prime dipolar couplings in the HIV-2 TAR RNA and will discuss the reasons that so far precluded the quantification of the DPHs for the 30mer RNA.
Keywords:constant time COSY  dipolar couplings  JPH couplings  nucleic acids  phosphodiester backbone  relaxation effects
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