Univ. Grenoble Alpes, CNRS, CEA, Institut de Biologie Structurale (IBS), 71, Avenue des Martyrs, 38044, Grenoble, France.
J Biomol NMR. 2020 Jan;74(1):83-94. doi: 10.1007/s10858-019-00293-x. Epub 2020 Jan 2.
Specific isotopic labeling of methyl groups in a perdeuterated protein background enables the detection of long range NOEs in proteins or high molecular weight complexes. We introduce here an approach, combining an optimized isotopic labeling scheme with a specifically tailored NMR pulse sequence, to distinguish between intramolecular and intermolecular NOE connectivities. In hetero-oligomeric complexes, this strategy enables sign encoding of intra-subunit and inter-subunit NOEs. For homo-oligomeric assemblies, our strategy allows the specific detection of intra-chain NOEs in high resolution 3D NOESY spectra. The general principles, possibilities and limitations of this approach are presented. Applications of this approach for the detection of intermolecular NOEs in a hetero-hexamer, and the assignment of methyl H and C resonances in a homo-tetrameric protein complex are shown.
在重氘化蛋白质背景下对甲基进行特定的同位素标记,可以检测蛋白质或高分子量复合物中的长程 NOE。我们在这里介绍一种方法,将优化的同位素标记方案与专门设计的 NMR 脉冲序列相结合,以区分分子内和分子间的 NOE 连通性。在异源寡聚体复合物中,该策略能够对亚基内和亚基间的 NOE 进行信号编码。对于同源寡聚体组装体,我们的策略允许在高分辨率 3D NOESY 谱中特异性检测链内 NOE。介绍了该方法的一般原理、可能性和局限性。该方法在检测异源六聚体中的分子间 NOE 以及在同源四聚体蛋白复合物中分配甲基 H 和 C 共振方面的应用也进行了展示。