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溶液中游离的野生型酵母同工酶-1-铁细胞色素c以及与细胞色素c过氧化物酶结合的该蛋白的质子核磁共振归属和磁轴方向。

Proton NMR assignments and magnetic axes orientations for wild-type yeast iso-1-ferricytochrome c free in solution and bound to cytochrome c peroxidase.

作者信息

Sukits S F, Erman J E, Satterlee J D

机构信息

Department of Chemistry, Washington State University, Pullman 99164-4630, USA.

出版信息

Biochemistry. 1997 Apr 29;36(17):5251-9. doi: 10.1021/bi970072b.

Abstract

Extensive proton hyperfine-shifted resonance assignments have been made for wild-type yeast iso-1-ferricytochrome c when it is free in solution and when it is noncovalently complexed to resting state cytochrome c peroxidase. Complete heme proton resonance assignments were made for free iso-1-ferricytochrome c, while for CcP-complexed iso-1-ferricytochrome c, 70% of heme proton assignments were made. Additional proton resonance assignments were made for hyperfine-shifted protons of amino acids near the heme. These assignments allowed identification of the most extensive set of complex-induced proton shifts yet reported for CcP/cytochrome c complexes. Several purely dipolar-shifted resonances from heme vicinity amino acid protons were also assigned in both free and complexed iso-1-ferricyt c. Both sets of resonance assignments allowed assessment of the origin of proton complex-induced shifts. Using the assigned dipolar-shifted proton resonances as a basis, the orientations of the principal axis systems of the paramagnetic susceptibility tensors for free and cytochrome c peroxidase-bound iso-1-ferricytochrome c were elucidated. The results indicated that the iso-1-ferricytochrome c magnetic axis system orientation shifts significantly upon complex formation. The direction of the complex-induced shifts for heme proton resonances is largely accounted for by the magnetic anisotropy changes. However, analysis of heme complex-induced shifts also reveals local changes in magnetic environment for two heme substituents, presumably through a specific structure change.

摘要

对于野生型酵母同工酶-1-铁细胞色素c在溶液中自由存在时以及与静止状态的细胞色素c过氧化物酶非共价结合时,已经完成了广泛的质子超精细位移共振归属。对于游离的同工酶-1-铁细胞色素c,完成了完整的血红素质子共振归属,而对于与细胞色素c过氧化物酶(CcP)结合的同工酶-1-铁细胞色素c,完成了70%的血红素质子归属。还对血红素附近氨基酸的超精细位移质子进行了额外的质子共振归属。这些归属使得能够鉴定出迄今为止报道的关于CcP/细胞色素c复合物中最广泛的一组复合物诱导的质子位移。在游离和结合的同工酶-1-铁细胞色素c中,还归属了来自血红素附近氨基酸质子的几个纯偶极位移共振。这两组共振归属都使得能够评估质子复合物诱导位移的起源。以归属的偶极位移质子共振为基础,阐明了游离的和与细胞色素c过氧化物酶结合的同工酶-1-铁细胞色素c的顺磁磁化率张量主轴系统的取向。结果表明,同工酶-1-铁细胞色素c的磁轴系统取向在复合物形成时发生显著变化。血红素质子共振的复合物诱导位移方向在很大程度上由磁各向异性变化所解释。然而,对血红素复合物诱导位移的分析还揭示了两个血红素取代基的磁环境局部变化,推测是通过特定的结构变化。

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