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由核磁共振距离和化学位移限制条件确定的一氧化碳肌红蛋白的溶液结构

Solution structure of carbonmonoxy myoglobin determined from nuclear magnetic resonance distance and chemical shift constraints.

作者信息

Osapay K, Theriault Y, Wright P E, Case D A

机构信息

Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

J Mol Biol. 1994 Nov 25;244(2):183-97. doi: 10.1006/jmbi.1994.1718.

Abstract

Solution NMR structures for sperm whale carbonmonoxy myoglobin have been calculated using 1301 distance restraints determined from nuclear Overhauser enhancement (NOE) measurements on 15N-labeled protein and chemical shift calculations for 385 protons. Starting structures included four crystal forms of myoglobin and 12 structures generated by metric matrix distance geometry. Refinements were also carried out using distance restraints alone. In general, the solution conformations are very close to the crystal structures, although the crystal structures are not consistent with some of the observed NOE connectivities. The solution structures are about as far apart from each other (as measured by backbone root-mean-square deviations) as they are from the crystal conformation. Inclusion of chemical shift restraints both tightened the spread of computed structures (especially in the heme pocket region) and led to structures that were closer to the X-ray conformation. The disposition of the side-chains near the heme group could in many cases be determined with considerable confidence, suggesting that a chemical shift analysis may be a useful adjunct to other sources of structural information available from NMR. In particular, this evidence suggests that the distal histidine residue is slightly displaced from the crystal conformation, but still inside the heme pocket at pH 5.6, that the side-chain of Leu89 is in contact with the heme ring but is probably disordered, and that the heme pocket where ligands bind is virtually identical in solution and in the crystal forms.

摘要

抹香鲸一氧化碳肌红蛋白的溶液核磁共振结构已通过对15N标记蛋白进行核Overhauser增强(NOE)测量确定的1301个距离约束以及对385个质子的化学位移计算得出。初始结构包括肌红蛋白的四种晶体形式以及通过度量矩阵距离几何生成的12种结构。也仅使用距离约束进行了优化。总体而言,溶液构象与晶体结构非常接近,尽管晶体结构与一些观察到的NOE连接性不一致。溶液结构彼此之间的距离(通过主链均方根偏差测量)与它们与晶体构象的距离大致相同。纳入化学位移约束既收紧了计算结构的分散度(特别是在血红素口袋区域),又导致结构更接近X射线构象。在许多情况下,可以相当有把握地确定血红素基团附近侧链的位置,这表明化学位移分析可能是NMR提供的其他结构信息来源的有用辅助手段。特别是,这一证据表明,远端组氨酸残基相对于晶体构象略有位移,但在pH 5.6时仍位于血红素口袋内,Leu89的侧链与血红素环接触但可能无序,并且配体结合的血红素口袋在溶液和晶体形式中几乎相同。

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