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细胞色素C中间氧化还原态的连续流动-共振拉曼光谱

Continuous flow-resonance Raman spectroscopy of an intermediate redox state of cytochrome C.

作者信息

Forster M, Hester R E, Cartling B, Wilbrandt R

出版信息

Biophys J. 1982 May;38(2):111-6. doi: 10.1016/S0006-3495(82)84537-2.

Abstract

An intermediate redox state of cytochrome c at alkaline pH, generated upon rapid reduction by sodium dithionite, has been observed by resonance Raman (RR) spectroscopy in combination with the continuous flow technique. The RR spectrum of the intermediate state is reported for excitation both in the (alpha, beta) and the Soret optical absorption band. The spectra of the intermediate state are more like those of the stable reduced form than those of the stable oxidized form. For excitation of 514.5 nm, the most prominent indication of an intermediate state is the wave-number shift of one RR band from 1,562 cm-1 in the stable oxidized state through 1,535 cm-1 in the intermediate state to 1,544 cm-1 in the stable reduced state. For excitation at 413.1 nm, a band, present at 1,542 cm-1 in the stable reduced state but not present in the stable oxidized state, is absent in the intermediate state. We interpret the intermediate species as the state where the heme iron is reduced but the protein remains in the conformation of the oxidized state, with methionine-80 displaced as sixth ligand to the heme iron, before relaxing to the conformation of the stable reduced state, with methionine-80 returned as sixth ligand.

摘要

连二亚硫酸钠快速还原细胞色素c在碱性pH条件下产生的中间氧化还原态,已通过共振拉曼(RR)光谱结合连续流动技术观察到。报道了中间态在(α,β)和Soret光吸收带激发下的RR光谱。中间态的光谱更类似于稳定还原态的光谱,而不是稳定氧化态的光谱。对于514.5 nm的激发,中间态最显著的迹象是一个RR带的波数从稳定氧化态的1,562 cm-1通过中间态的1,535 cm-1移动到稳定还原态的1,544 cm-1。对于413.1 nm的激发,在稳定还原态中位于1,542 cm-1但在稳定氧化态中不存在的一个谱带,在中间态中也不存在。我们将中间物种解释为血红素铁被还原但蛋白质仍保持氧化态构象的状态,其中甲硫氨酸-80作为血红素铁的第六个配体被取代,然后再弛豫到稳定还原态的构象,此时甲硫氨酸-80作为第六个配体返回。

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Folding of horse cytochrome c in the reduced state.还原态马细胞色素c的折叠
J Mol Biol. 2001 Oct 5;312(5):1135-60. doi: 10.1006/jmbi.2001.4993.

本文引用的文献

1
Transient Raman study of CO-haemoprotein photolysis: origin of the quantum yield.
Nature. 1980 Apr 10;284(5756):570-2. doi: 10.1038/284570a0.

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