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http://hdl.handle.net/10773/19875
Título: | PAIN with and without PAR: variants for third-spin assisted heteronuclear polarization transfer |
Autor: | Agarwal, Vipin Sardo, Mariana Scholz, Ingo Boeckmann, Anja Ernst, Matthias Meier, Beat H. |
Palavras-chave: | SOLID-STATE NMR ANGLE-SPINNING NMR NUCLEAR-MAGNETIC-RESONANCE PROTEIN-STRUCTURE DETERMINATION ESCHERICHIA-COLI THIOREDOXIN 3D STRUCTURE DETERMINATION ROTATING SOLIDS CROSS-POLARIZATION AMYLOID FIBRILS CORRELATION SPECTROSCOPY |
Data: | 2013 |
Editora: | SPRINGER |
Resumo: | In this article, we describe third-spin assisted heteronuclear recoupling experiments, which play an increasingly important role in measuring long-range heteronuclear couplings, in particular N-15-C-13, in proteins. In the proton-assisted insensitive nuclei cross polarization (PAIN-CP) experiment (de PaA << pe et al. in J Chem Phys 134:095101, 2011), heteronuclear polarization transfer is always accompanied by homonuclear transfer of the proton-assisted recoupling (PAR) type. We present a phase-alternating experiment that promotes heteronuclear (e.g. N-15 -> C-13) polarization transfer while simultaneously minimizing homonuclear (e.g.C-13 -> C-13) transfer (PAIN without PAR). This minimization of homonuclear polarization transfer is based on the principle of the resonant second-order transfer (RESORT) recoupling scheme where the passive proton spins are irradiated by a phase-alternating sequence and the modulation frequency is matched to an integer multiple of the spinning frequency. The similarities and differences between the PAIN-CP and this het-RESORT experiment are discussed here. |
Peer review: | yes |
URI: | http://hdl.handle.net/10773/19875 |
DOI: | 10.1007/s10858-013-9756-4 |
ISSN: | 0925-2738 |
Versão do Editor: | 10.1007/s10858-013-9756-4 |
Aparece nas coleções: | CICECO - Artigos |
Ficheiros deste registo:
Ficheiro | Descrição | Tamanho | Formato | |
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PAIN with and without PAR Variants for third-spin assisted heteronuclear polarization transfer_10.1007s10858-013-9756-4.pdf | 1.12 MB | Adobe PDF |
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