首页> 外文期刊>Journal of Biomolecular NMR >Residual backbone and side-chain C-13 and N-15 resonance assignments of the intrinsic transmembrane light-harvesting 2 protein complex by solid-state Magic Angle Spinning NMR spectroscopy
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Residual backbone and side-chain C-13 and N-15 resonance assignments of the intrinsic transmembrane light-harvesting 2 protein complex by solid-state Magic Angle Spinning NMR spectroscopy

机译:固态幻角自旋核磁共振光谱法研究内在跨膜光捕获2蛋白复合物的残留骨架和侧链C-13和N-15共振分配

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摘要

This study reports the sequence specific chemical shifts assignments for 76 residues of the 94 residues containing monomeric unit of the photosynthetic light-harvesting 2 transmembrane protein complex from Rhodopseudomonas acidophila strain 10050, using Magic Angle Spinning (MAS) NMR in combination with extensive and selective biosynthetic isotope labeling methods. The sequence specific chemical shifts assignment is an essential step for structure determination by MAS NMR. Assignments have been performed on the basis of 2-dimensional proton-driven spin diffusion C-13-C-13 correlation experiments with mixing times of 20 and 500 ms and band selective C-13-C-13 correlation spectroscopy on a series of site-specific biosynthetically labeled samples. The decreased line width and the reduced number of correlation signals of the selectively labeled samples with respect to the uniformly labeled samples enable to resolve the narrowly distributed correlation signals of the backbone carbons and nitrogens involved in the long α-helical transmembrane segments. Inter-space correlations between nearby residues and between residues and the labeled BChl a cofactors, provided by the C-13-C-13 correlation experiments using a 500 ms spin diffusion period, are used to arrive at sequence specific chemical shift assignments for many residues in the protein complex. In this way it is demonstrated that MAS NMR methods combined with site-specific biosynthetic isotope labeling can be used for sequence specific assignment of the NMR response of transmembrane proteins.
机译:这项研究报告使用魔术角旋转(MAS)NMR结合广泛和选择性的生物合成技术,对嗜酸红假单胞菌菌株10050的光合光捕获2个跨膜蛋白复合物的94个残基中的76个残基中的76个残基进行了序列特异性化学位移分配。同位素标记方法。序列特定的化学位移分配是通过MAS NMR确定结构的必要步骤。在二维质子驱动的自旋扩散C-13-C-13相关实验的基础上进行了分配,混合时间为20和500 ms,并且在一系列站点上进行了带选择性C-13-C-13相关光谱特异性生物合成标记的样品。相对于均匀标记的样品,选择性标记的样品的减小的线宽和减少的相关信号数量使得能够解析长α-螺旋跨膜片段中所涉及的主链碳和氮的狭窄分布的相关信号。 C-13-C-13相关实验使用500 ms自旋扩散周期提供的附近残基之间,残基与标记的BChl a辅因子之间的空间相关性用于得出许多残基的序列特定化学位移分配在蛋白质复合物中。以这种方式证明,MAS NMR方法与位点特异性生物合成同位素标记相结合可用于跨膜蛋白NMR响应的序列特异性分配。

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