Cammack R, Luijk L J, Maguire J J, Fry I V, Packer L
Biochim Biophys Acta. 1979 Nov 8;548(2):267-75. doi: 10.1016/0005-2728(79)90134-8.
Electron paramagnetic resonance (EPR) spectra were recorded of whole filaments of the cyanobacteria Nostoc muscorum and Anabaena cylindrica. Signals due to manganese were removed by freezing and thawing the cells in EDTA. EPR spectra were assigned on the basis of their g values, linewidths, temperature dependence and response to dithionite and light treatments. The principal components identified were: (i) rhombic Fe3+ (signal at g = 4.3), probably a soluble storage form of iron; (ii) iron-sulfur centers A and B of Photosystem I; (iii) the photochemical electron acceptor 'X' of Photosystem I; this component was also observed for the first time in isolated heterocysts; (iv) soluble ferredoxin which was present at a concentration of 1 molecule per 140 +/- 20 chlorophyll molecules; (v) a membrane-bound iron-sulfur protein (g = 1.92). A signal g = 6 in the oxidized state was probably due to an unidentified heme compound. During deprivation of iron the rhombic Fe3+, centers A, B and X of Photosystem I, and soluble ferredoxin were all observed to decrease.
记录了念珠藻和圆柱鱼腥藻蓝细菌整个丝状体的电子顺磁共振(EPR)光谱。通过在乙二胺四乙酸(EDTA)中对细胞进行冻融来去除锰产生的信号。根据EPR光谱的g值、线宽、温度依赖性以及对连二亚硫酸盐和光照处理的响应来进行谱峰归属。鉴定出的主要成分有:(i)菱形Fe3 +(g = 4.3处的信号),可能是铁的一种可溶性储存形式;(ii)光系统I的铁硫中心A和B;(iii)光系统I的光化学电子受体“X”;在分离出的异形胞中也首次观察到了该成分;(iv)可溶性铁氧还蛋白,其浓度为每140±20个叶绿素分子含1个分子;(v)一种膜结合铁硫蛋白(g = 1.92)。氧化态下g = 6的信号可能归因于一种未知的血红素化合物。在缺铁期间,观察到菱形Fe3 +、光系统I的中心A、B和X以及可溶性铁氧还蛋白均减少。