首页> 外文期刊>Protein Science: A Publication of the Protein Society >NMR of hydrogen bonding in cold-shock protein A and an analysis of the influence of crystallographic resolution on comparisons of hydrogen bond lengths.
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NMR of hydrogen bonding in cold-shock protein A and an analysis of the influence of crystallographic resolution on comparisons of hydrogen bond lengths.

机译:NMR分析冷休克蛋白A中的氢键,并分析晶体分辨率对氢键长度比较的影响。

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Hydrogen bonding in cold-shock protein A of Escherichia coli has been investigated using long-range HNCO spectroscopy. Nearly half of the amide protons involved in hydrogen bonds in solution show no measurable protection from exchange in water, cautioning against a direct correspondence between hydrogen bonding and hydrogen exchange protection. The N to O atom distance across a hydrogen bond, R(NO), is related to the size of the (3h)J(NC') trans hydrogen bond coupling constant and the amide proton chemical shift. Both NMR parameters show poorer agreement with the 2.0-A resolution X-ray structure of the cold-shock protein studied by NMR than with a 1.2-A resolution X-ray structure of a homologous cold-shock protein from the thermophile B. caldolyticus. The influence of crystallographic resolution on comparisons of hydrogen bond lengths was further investigated using a database of 33 X-ray structures of ribonuclease A. For highly similar structures, both hydrogen bond R(NO) distance and Calpha coordinate root mean square deviations (RMSD) show systematic increases as the resolution of the X-ray structure used for comparison decreases. As structures diverge, the effects of coordinate errors on R(NO) distance and Calpha coordinate root mean square deviations become progressively smaller. The results of this study are discussed with regard to the influence of data precision on establishing structure similarity relationships between proteins.
机译:已使用远距离HNCO光谱研究了大肠杆菌冷休克蛋白A中的氢键。溶液中与氢键有关的酰胺质子几乎有一半对水交换没有显示出可测量的保护作用,因此请注意氢键与氢交换保护之间不存在直接对应关系。氢键上N到O原子的距离R(NO)与(3h)J(NC')反式氢键偶合常数的大小和酰胺质子化学位移有关。这两个NMR参数与通过嗜热芽孢杆菌(B. caldolyticus)同源的冷休克蛋白的1.2-A分辨率X射线结构相比,通过NMR研究的冷休克蛋白的一致性较差。使用33个核糖核酸酶A的X射线结构数据库进一步研究了晶体学分辨率对氢键长度比较的影响。对于高度相似的结构,氢键R(NO)距离和Calpha坐标均方根偏差(RMSD)显示用于比较的X射线结构的分辨率降低时,系统的增加。随着结构的变化,坐标误差对R(NO)距离和Calpha坐标均方根偏差的影响逐渐减小。关于数据精度对建立蛋白质之间的结构相似性关系的影响,讨论了本研究的结果。

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