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细胞色素 c 氧化酶的圆二色性光谱。

Circular dichroism spectra of cytochrome c oxidase.

机构信息

AN Belozersky Institute of Physico-Chemical Biology, Moscow State University, Moscow 119992, Russia.

出版信息

Metallomics. 2011 Apr;3(4):417-32. doi: 10.1039/c0mt00099j. Epub 2011 Feb 2.

Abstract

Circular dichroism spectra of bovine heart aa(3)-type cytochrome c oxidase have been studied with a major focus on the Soret band π → π* transitions, B(0(x,y)), in the two iron porphyrin groups of the enzyme. The spectra of the fully reduced and fully oxidized enzyme as well as of its carbon monoxide and cyanide complexes have been explored. In addition, CD spectra of the reduced and oxidized ba(3)-type cytochrome c oxidase from Thermus thermophilus were recorded for comparison. An attempt is made to interpret the CD spectra of cytochrome c oxidase with the aid of a classical model of dipole-dipole coupled oscillators taking advantage of the known 3D crystal structure of the enzyme. Simultaneous modeling of the CD and absorption spectra shows that in the bovine oxidase, the dipole-dipole interactions between the hemes a and a(3), although contributing significantly, cannot account either for the lineshape or the magnitude of the experimental spectra. However, adding the interactions of the hemes with 22 aromatic amino acid residues located within 12 Å from either of the two heme groups can be used to model the CD curves for the fully reduced and fully oxidized oxidase with reasonable accuracy. Interaction of the hemes with the peptide bond transition dipoles is found to be insignificant. The modeling indicates that the CD spectra of cytochrome oxidase in both the reduced and oxidized states are influenced significantly by interaction with Tyr244 in the oxygen-reducing center of the enzyme. Hence, CD spectroscopy may provide a useful tool for monitoring the redox/ionization state of this residue. The modeling confirms wide energy splitting of the orthogonal B(x) and B(y) transitions in the porphyrin ring of heme a.

摘要

已研究了牛心 aa(3)-型细胞色素 c 氧化酶的圆二色性光谱,主要关注酶中两个铁卟啉基团的 Soret 带 π → π*跃迁 B(0(x,y))。探索了完全还原和完全氧化的酶以及其一氧化碳和氰化物配合物的光谱。此外,还记录了来自 Thermus thermophilus 的还原和氧化 ba(3)-型细胞色素 c 氧化酶的 CD 光谱进行比较。尝试利用已知的酶 3D 晶体结构,借助于偶极-偶极耦合振子的经典模型来解释细胞色素 c 氧化酶的 CD 光谱。CD 和吸收光谱的同时建模表明,在牛氧化酶中,尽管血红素 a 和 a(3)之间的偶极-偶极相互作用贡献很大,但它们既不能解释谱线形状也不能解释实验谱的大小。然而,添加位于两个血红素基团之一的 12Å 内的 22 个芳香族氨基酸残基与血红素的相互作用可用于合理准确地模拟完全还原和完全氧化的氧化酶的 CD 曲线。发现血红素与肽键跃迁偶极子的相互作用可以忽略不计。该模型表明,在还原和氧化状态下细胞色素氧化酶的 CD 光谱都受到酶的氧还原中心中 Tyr244 相互作用的显著影响。因此,CD 光谱学可能是监测该残基的氧化还原/离子化状态的有用工具。该模型证实了血红素 A 卟啉环中正交 B(x)和 B(y)跃迁的宽能分裂。

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