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利用质子顺磁位移比较还原型和氧化型酵母同工-1-细胞色素c。

Comparison of reduced and oxidized yeast iso-1-cytochrome c using proton paramagnetic shifts.

作者信息

Gao Y A, Boyd J, Pielak G J, Williams R J

机构信息

Inorganic Chemistry Laboratory, University of Oxford, U.K.

出版信息

Biochemistry. 1991 Feb 19;30(7):1928-34. doi: 10.1021/bi00221a028.

Abstract

Dipolar paramagnetic shifts for protons of yeast iso-1-cytochrome c have been calculated by using an optimized g-tensor and the X-ray crystallographic coordinates of the reduced form of yeast iso-1-cytochrome c [Louie, G. V., & Brayer, G. D. (1990) J. Mol. Biol. 214, 527-555]. The calculated values are compared with the observed paramagnetic shift determined from over 450 nonequivalent protons that have been assigned in both oxidation states [Gao, Y., Boyd, J., Williams, R. J. P., & Pielak, G. J. (1990) Biochemistry 29, 6994-7003]. There is good agreement between the calculated and the experimental data with a few exceptions. This indicates that, overall, the solution structures must be very similar in both the reduced and oxidized states in solution as is the case in crystals. The differences between observed and calculated shift values for the molecule in solution are most readily explained by slight movement of the heme and certain changes in diamagnetic shift due to small rearrangements of a few residues and some considerable changes in a few hydrogen bonds. It is also known that small differences exist between the structures of the two oxidation states in crystals but the hydrogen-bond changes are not so easily observed there. Structural changes from nuclear magnetic resonance data are in reasonable agreement with those deduced from crystallography, but additional information is clearly available concerning changes in hydrogen bonding.

摘要

通过使用优化的g张量和酵母异-1-细胞色素c还原形式的X射线晶体学坐标,计算了酵母异-1-细胞色素c质子的偶极顺磁位移[Louie, G. V., & Brayer, G. D. (1990) J. Mol. Biol. 214, 527 - 555]。将计算值与从两种氧化态下已指定的450多个非等效质子确定的观测顺磁位移进行比较[Gao, Y., Boyd, J., Williams, R. J. P., & Pielak, G. J. (1990) Biochemistry 29, 6994 - 7003]。除了少数例外,计算值与实验数据之间有很好的一致性。这表明,总体而言,溶液中还原态和氧化态的溶液结构一定非常相似,就像晶体中的情况一样。溶液中分子观测和计算位移值之间的差异最容易通过血红素的轻微移动以及由于少数残基的小重排和一些氢键的相当大变化导致的抗磁位移的某些变化来解释。还已知晶体中两种氧化态的结构之间存在微小差异,但在那里不容易观察到氢键变化。来自核磁共振数据的结构变化与从晶体学推导的结构变化合理一致,但关于氢键变化显然有更多信息可用。

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