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在监测蛋白质核磁共振结构精修中联合使用¹³C化学位移和¹Hα-¹³Cα异核NOE数据。

Combined use of 13C chemical shift and 1H alpha-13C alpha heteronuclear NOE data in monitoring a protein NMR structure refinement.

作者信息

Celda B, Biamonti C, Arnau M J, Tejero R, Montelione G T

机构信息

Center for Advanced Biotechnology and Medicine, Rutgers University, Piscataway, NJ 08854.

出版信息

J Biomol NMR. 1995 Feb;5(2):161-72. doi: 10.1007/BF00208807.

DOI:10.1007/BF00208807
PMID:7703700
Abstract

A large portion of the 13C resonance assignments for murine epidermal growth factor (mEGF) at pH 3.1 and 28 degrees C has been determined at natural isotope abundance. Sequence-specific 13C assignments are reported for 100% of the assignable C alpha, 96% of the C beta, 86% of the aromatic and 70% of the remaining peripheral aliphatic resonances of mEGF. A good correlation was observed between experimental and back-calculated C alpha chemical shifts for regions of regular beta-sheet structure. These assignments also provide the basis for interpreting 1H alpha-13C alpha heteronuclear NOE (HNOE) values in mEGF at natural isotope abundance. Some of the backbone polypeptide segments with high internal mobility, indicated by these 1H alpha-13C alpha HNOE measurements, correlate with locations of residues involved in the putative mEGF-receptor binding site. Using four families of mEGF structures obtained over the last few years, we demonstrate that standard deviations between experimental and back-calculated delta delta C alpha values can be used to monitor the refinement of this protein's structure, particularly for beta-sheet regions. Improved agreement between calculated and observed values of delta delta C alpha is correlated with other measures of structure quality, including lowered values of residual constraint violations and more negative values of conformational energy. These results support the view that experimental conformation-dependent chemical shifts, delta delta C alpha, can provide a reliable source of information for monitoring the process of protein structure refinement and are potentially useful restraints for driving the refinement.

摘要

在天然同位素丰度条件下,已确定了小鼠表皮生长因子(mEGF)在pH 3.1和28摄氏度时大部分的13C共振归属。报告了mEGF中100%可归属的Cα、96%的Cβ、86%的芳香族以及70%其余外围脂肪族共振的序列特异性13C归属。对于规则β-折叠结构区域,实验测得的Cα化学位移与反向计算值之间观察到良好的相关性。这些归属也为解释天然同位素丰度下mEGF中1Hα-13Cα异核NOE(HNOE)值提供了基础。这些1Hα-13Cα HNOE测量表明具有高内部流动性的一些主链多肽片段,与推测的mEGF-受体结合位点中涉及的残基位置相关。利用过去几年获得的四个mEGF结构家族,我们证明实验测得的和反向计算的δδCα值之间的标准偏差可用于监测该蛋白质结构的优化,特别是对于β-折叠区域。计算值与观察值之间更好的一致性与结构质量的其他指标相关,包括降低的残余约束违反值和更负的构象能量值。这些结果支持这样一种观点,即实验确定的构象依赖性化学位移δδCα可以为监测蛋白质结构优化过程提供可靠的信息来源,并且对于推动优化是潜在有用的约束条件。

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