Novel 2D Triple-Resonance NMR Experiments for Sequential Resonance Assignments of Proteins
β Scribed by Keyang Ding; Angela M. Gronenborn
- Publisher
- Elsevier Science
- Year
- 2002
- Tongue
- English
- Weight
- 148 KB
- Volume
- 156
- Category
- Article
- ISSN
- 1090-7807
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β¦ Synopsis
We present 2D versions of the popular triple resonance HN(CO) CACB, HN(COCA)CACB, HN(CO)CAHA, and HN(COCA) CAHA experiments, commonly used for sequential resonance assignments of proteins. These experiments provide information about correlations between amino proton and nitrogen chemical shifts and the alpha- and beta-carbon and alpha-proton chemical shifts within and between amino acid residues. Using these 2D spectra, sequential resonance assignments of H(N), N, C(alpha), C(beta), and H(alpha) nuclei are easily achieved. The resolution of these spectra is identical to the well-resolved 2D (15)N-(1)H HSQC and H(NCO)CA spectra, with slightly reduced sensitivity compared to their 3D and 4D versions. These types of spectra are ideally suited for exploitation in automated assignment procedures and thereby constitute a fast and efficient means for NMR structural determination of small and medium-sized proteins in solution in structural genomics programs.
π SIMILAR VOLUMES
Two-dimensional versions of HNCA and HNCO experiments are described, which provide essentially the same information as the 3D sequence. A multiple-quantum coherence involving either lSN and 13C~ or 15N and 13CO is created. One of the two frequencies is given by the middle point between the two cross