Boelens R, Rademaker H, Pel R, Wever R
Biochim Biophys Acta. 1982 Jan 20;679(1):84-94. doi: 10.1016/0005-2728(82)90258-4.
Three complexes of NO with cytochrome c oxidase are described which are all photodissociable at low temperatures as measured by EPR. The EPR parameters of the cytochrome a2+(3)-NO complex are the same both in the fully reduced enzyme and in the mixed-valence enzyme. The kinetics of photodissociation of cytochrome a2+(3)-NO and recombination of NO with cytochrome a2+(3) (in the 30-70 K region) revealed no differences in structure between cytochrome a2+(3) in the fully reduced and the mixed-valence states. The action spectrum of the photodissociation of cytochrome a2+(3)-NO as measured by EPR has maxima at 595, 560 and 430 nm, and corresponds to the absorbance spectrum of cytochrome a2+(3)-NO. Photodissociation of cytochrome a2+(3)-NO in the mixed-valence enzyme changes the EPR intensity at g 3.03, due to electron transfer from cytochrome a2+(3) to cytochrome a3+. The extent of electron transfer was found to be temperature dependent. This suggests that a conformational change is coupled to this electron transfer. The complex of NO with oxidized cytochrome c oxidase shows a photodissociation reaction and recombination of NO (in the 20-40 K region) which differ completely from those observed in cytochrome a2+(3)-NO. The observed recombination occurs at a temperature 15 K lower than that found for the cytochrome a2+(3)-NO complex. The action spectrum of the oxidized complex shows a novel spectrum with maxima at 640 and below 400 nm; it is assigned to a Cu2+B-NO compound. The triplet species with delta ms = 2 EPR signals at g 4 and delta ms = 1 signals at g 2.69 and 1.67, that is observed in partially reduced cytochrome c oxidase treated with azide and NO, can also be photodissociated.
本文描述了一氧化氮(NO)与细胞色素c氧化酶形成的三种复合物,通过电子顺磁共振(EPR)测量发现,它们在低温下均可发生光解离。细胞色素a2+(3)-NO复合物的EPR参数在完全还原的酶和混合价态的酶中是相同的。细胞色素a2+(3)-NO的光解离动力学以及NO与细胞色素a2+(3)的重组(在30 - 70 K区域)表明,完全还原态和混合价态的细胞色素a2+(3)在结构上没有差异。通过EPR测量的细胞色素a2+(3)-NO光解离作用光谱在595、560和430 nm处有最大值,与细胞色素a2+(3)-NO的吸收光谱相对应。混合价态酶中细胞色素a2+(3)-NO的光解离会改变g = 3.03处的EPR强度,这是由于电子从细胞色素a2+(3)转移到细胞色素a3+。发现电子转移程度与温度有关。这表明构象变化与这种电子转移相关联。NO与氧化态细胞色素c氧化酶的复合物表现出光解离反应以及NO的重组(在20 - 40 K区域),这与在细胞色素a2+(3)-NO中观察到的情况完全不同。观察到的重组发生温度比细胞色素a2+(3)-NO复合物低15 K。氧化态复合物的作用光谱显示出一种新的光谱,在640 nm和低于400 nm处有最大值;它被归因于一种Cu2+B-NO化合物。在用叠氮化物和NO处理的部分还原的细胞色素c氧化酶中观察到的具有δms = 2的EPR信号在g = 4处以及δms = 1的信号在g = 2.69和1.67处的三重态物种也可以发生光解离。