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J-GFT NMR for precise measurement of mutually correlated nuclear spin-spin couplings

机译:J-GFT NMR用于精确测量相互关联的核自旋-自旋偶合

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G-matrix Fourier transform (GFT) NMR spectroscopy is presented for accurate and precise measurement of chemical shifts and nuclear spin-spin couplings correlated according to spin system. The new approach, named "J-GFT NMR", is based on a largely extended GFT NMR formalism and promises to have a broad impact on projection NMR spectroscopy. Specifically, constant-time J-GFT (6,2)D (HA-CA-CO)-N-HN was implemented for simultaneous measurement of five mutually correlated NMR parameters, that is, N-15 backbone chemical shifts and the four one-bond spin-spin couplings C-13(alpha)-H-1(alpha), C-13(alpha)-C-13', N-15-C-13', and N-15-H-1(Nu). The experiment was applied for measuring residual dipolar couplings (RDCs) in an 8 kDa protein Z-domain aligned with Pf1 phages. Comparison with RDC values extracted from conventional NMR experiments reveals that RDCs are measured with high precision and accuracy, which is attributable to the facts that (i) the use of constant time evolution ensures that signals do not broaden whenever multiple RDCs are jointly measured in a single dimension and (ii) RDCs are multiply encoded in the multiplets arising from the joint sampling. This corresponds to measuring the couplings multiple times in a statistically independent manner. A key feature of J-GFT NMR, i.e., the correlation of couplings according to spin systems without reference to sequential resonance assignments, promises to be particularly valuable for rapid identification of backbone conformation and classification of protein fold families on the basis of statistical analysis of dipolar couplings.
机译:提出了G矩阵傅里叶变换(GFT)NMR光谱,用于精确和精确地测量化学位移和根据自旋系统相关的核自旋-自旋耦合。名为“ J-GFT NMR”的新方法基于大大扩展的GFT NMR形式主义,有望对投影NMR光谱产生广泛的影响。具体而言,实施恒定时间J-GFT(6,2)D(HA-CA-CO)-N-HN用于同时测量五个相互关联的NMR参数,即N-15主链化学位移和四个键自旋自旋偶合C-13α-H-1α,C-13α-C-13',N-15-C-13'和N-15-H-1(怒)。该实验适用于测量与Pf1噬菌体对齐的8 kDa蛋白质Z结构域中的残留偶极偶联(RDC)。与从常规NMR实验中提取的RDC值进行比较后发现,RDC的测量精度和准确度高,这是由于以下事实:(i)使用恒定时间演化可确保在多个RDC中联合测量时信号不会变宽。单维度和(ii)RDC在联合采样产生的多重图中被多重编码。这对应于以统计上独立的方式多次测量联轴器。 J-GFT NMR的一个关键特征,即根据自旋系统的偶联之间的相关性,而不涉及顺序的共振分配,对于根据蛋白质的统计分析快速鉴定骨架构象和蛋白质折叠家族进行分类,特别有价值。偶极耦合。

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