Extensively sparse 13 C labeling to simplify solid-state NMR 13 C spectra of membrane proteins

Journal of Biomolecular NMR(2021)

引用 1|浏览3
暂无评分
摘要
Solid-state Nuclear Magnetic Resonance (ssNMR) is an emerging technique to investigate the structures and dynamics of membrane proteins in an artificial or native membrane environment. However, the structural studies of proteins by ssNMR are usually prolonged or impeded by signal assignments, especially the assignments of signals for collection of distance restraints, because of serious overlapping of signals in 2D 13 C– 13 C spectra. Sparse labeling of 13 C spins is an effective approach to simplify the 13 C spectra and facilitate the extractions of distance restraints. Here, we propose a new reverse labeling combination of six types of amino acid residues (Ile, Leu, Phe, Trp, Tyr and Lys), and show a clean reverse labeling effect on a model membrane protein E. coli aquaporin Z (AqpZ). We further combine this reverse labeling combination and alternate 13 C– 12 C labeling, and demonstrate an enhanced dilution effect in 13 C– 13 C spectra. In addition, the influences of reverse labeling on the labeling of the other types of residues are quantitatively analyzed in the two strategies (1, reverse labeling and 2, reverse labeling combining alternate 13 C– 12 C labeling). The signal intensities of some other types of residues in 2D 13 C– 13 C spectra are observed to be 20–50% weaker because of the unwanted reverse labeling. The extensively sparse 13 C labeling proposed in this study is expected to be useful in the collection of distance restraints using 2D 13 C– 13 C spectra of membrane proteins.
更多
查看译文
关键词
Solid-state NMR,Membrane proteins,Sparse 13C labeling,Reverse labeling
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要