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首页> 外文期刊>Journal of magnetic resonance >Assignment of congested NMR spectra: Carbonyl backbone enrichment via the Entner-Doudoroff pathway
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Assignment of congested NMR spectra: Carbonyl backbone enrichment via the Entner-Doudoroff pathway

机译:拥挤的NMR光谱分配:通过Entner-Doudoroff途径富集羰基主链

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摘要

In NMR spectra of complex proteins, sparse isotope enrichment can be important, in that the removal of many C-13-C-13 homonuclear J-couplings can narrow the lines and thereby facilitate the process of spectral assignment and structure elucidation. We present a simple scheme for selective yet extensive isotopic enrichment applicable for production of proteins in organisms utilizing the Entner-Doudoroff (ED) metabolic pathway. An enrichment scheme so derived is demonstrated in the context of a magic-angle spinning solid-state NMR (MASSSNMR) study of Pf1 bacteriophage, the host of which is Pseudomonas aeruginosa, strain K (PAK), an organism that uses the ED pathway for glucose catabolism. The intact and infectious Pf1 phage in this study was produced by infected PAK cells grown on a minimal medium containing 1-(CD)-C-13-glucose (C-13 in position 1) as the sole carbon source, as well as (NH4Cl)-N-15 as the only nitrogen source. The 37 MDaPf1 phage consists of about 93% major coat protein, 1% minor coat proteins, and 6% single- stranded, circular DNA. As a consequence of this composition and the enrichment scheme, the resonances in the MASSSNMR spectra of the Pf1 sample were almost exclusively due to carbonyl carbons in the major coat protein. Moreover, 3D heteronuclear NCOCX correlation experiments also show that the amino acids leucine, serine, glycine, and tyrosine were not isotopically enriched in their carbonyl positions (although most other amino acids were), which is as expected based upon considerations of the ED metabolic pathway. 3D NCOCX NMR data and 2D N-15-N-15 data provided strong verification of many previous assignments of N-15 amide and C-13 carbonyl shifts in this highly congested spectrum; both the semi-selective enrichment patterns and the narrowed linewidths allowed for greater certainty in the assignments as compared with use of uniformly enriched samples alone. (c) 2007 Elsevier Inc. All rights reserved.
机译:在复杂蛋白质的NMR光谱中,稀疏同位素富集可能很重要,因为去除许多C-13-C-13同核J偶联可以使谱线变窄,从而促进光谱分配和结构阐明的过程。我们提出了一个简单的方案,用于选择性但广泛的同位素富集,适用于利用Entner-Doudoroff(ED)代谢途径在生物体中生产蛋白质。如此富集的方案在Pf1噬菌体的魔角旋转固态NMR(MASSSNMR)研究中得到了证明,该噬菌体的宿主是铜绿假单胞菌K株(PAK),该生物利用ED途径进行葡萄糖分解代谢。该研究中完整且具有感染力的Pf1噬菌体是由感染的PAK细胞产生的,该细胞在含有1-(CD)-C-13-葡萄糖(位置1的C-13)作为唯一碳源的基础培养基上生长,并且( NH4Cl)-N-15是唯一的氮源。 37 MDaPf1噬菌体由约93%的主要外壳蛋白,1%的次要外壳蛋白和6%的单链环状DNA组成。由于这种组成和富集方案,Pf1样品的MASSSNMR光谱中的共振几乎完全归因于主要外壳蛋白中的羰基碳。此外,3D异核NCOCX相关性实验还表明,氨基酸亮氨酸,丝氨酸,甘氨酸和酪氨酸的羰基位置没有同位素富集(尽管大多数其他氨基酸都富集),这是基于ED代谢途径的考虑所期望的。 3D NCOCX NMR数据和2D N-15-N-15数据提供了在此高度拥挤的光谱中对N-15酰胺和C-13羰基位移的许多先前赋值的有力验证。与仅使用均一富集的样品相比,半选择性富集模式和较窄的线宽都使分配更有确定性。 (c)2007 Elsevier Inc.保留所有权利。

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