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The 2D {P} Spin-Echo-Difference Constant-Time [C, H]-HMQC Experiment for Simultaneous Determination of JH3′P and JC4′P in C-Labeled Nucleic Acids and Their Protein Complexes
Authors:Thomas Szyperski  Csar Fernndez  Akira Ono  Kurt Wüthrich  Masatsune Kainosho
Institution:a Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule-Hönggerberg, CH-8093, Zürich, Switzerland;b Department of Chemistry, Faculty of Science, Tokyo Metropolitan University, 1-1 Minamiohsawa, Hachioji, 192-03, Japan
Abstract:A two-dimensional {31P} spin-echo-difference constant-time 13C, 1H]-HMQC experiment (2D {31P}-sedct-13C, 1H]-HMQC) is introduced for measurements of 3JC4′P and 3JH3′P scalar couplings in large 13C-labeled nucleic acids and in DNA–protein complexes. This experiment makes use of the fact that 1H–13C multiple-quantum coherences in macromolecules relax more slowly than the corresponding 13C single-quantum coherences. 3JC4′P and 3JH3′P are related via Karplus-type functions with the phosphodiester torsion angles β and ε, respectively, and their experimental assessment therefore contributes to further improved quality of NMR solution structures. Data are presented for a uniformly 13C, 15N-labeled 14-base-pair DNA duplex, both free in solution and in a 17-kDa protein–DNA complex.
Keywords:3JC4′  P and 3JH3′  P scalar couplings  protein–  nucleic acid complexes  multiple-quantum coherence  NMR structure determination  13C labeling
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