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通过二维光谱对顺磁性血红素蛋白进行¹H NMR共振归属:马高铁叠氮肌红蛋白中的血红素共振

1H NMR resonance assignments in a paramagnetic heme protein by two-dimensional spectroscopy: heme resonances in equine met-azido myoglobin.

作者信息

Peyton D H

机构信息

Chemistry Department, Portland State University, Oregon 97207-0751.

出版信息

Biochem Biophys Res Commun. 1991 Mar 15;175(2):515-9. doi: 10.1016/0006-291x(91)91594-3.

Abstract

Specific heme protons for the majority of resonances in the downfield resolved region of equine met-azido myoglobin have been assigned using solely the two-dimensional 1H NMR experiments NOESY and COSY. Metazido myoglobin provides a useful test case for the applicability of these techniques to paramagnetic proteins for the following reasons. First met-azido myoglobin is a mixed spin-state protein, with significantly shorter relaxation times and broadened lines relative to pure low-spin systems (eg., met-cyano myoglobin). Second, met-azido hemoglobin and met-azido myoglobin are important as models for the physiological forms of hemoglobin. Third, a few sperm whale met-azido myoglobin resonances have been previously assigned, which permits a comparison of assignments for these similar proteins, and a check of the method presented here.

摘要

仅通过二维1H NMR实验NOESY和COSY,就已确定马肉叠氮肌红蛋白在低场分辨区域中大多数共振峰的特定血红素质子。肉叠氮肌红蛋白为这些技术应用于顺磁性蛋白质提供了一个有用的测试案例,原因如下。首先,肉叠氮肌红蛋白是一种混合自旋态蛋白质,相对于纯低自旋系统(如肉氰基肌红蛋白),其弛豫时间明显更短,谱线更宽。其次,肉叠氮血红蛋白和肉叠氮肌红蛋白作为血红蛋白生理形式的模型很重要。第三,此前已确定了一些抹香鲸肉叠氮肌红蛋白的共振峰,这使得可以比较这些相似蛋白质的归属,并检验此处提出的方法。

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