Petrouleas V, Brand J J, Parrett K G, Golbeck J H
Nuclear Research Center Demokritos, Attiki, Greece.
Biochemistry. 1989 Nov 14;28(23):8980-3. doi: 10.1021/bi00449a004.
We report the results of a Mössbauer study of the low-potential iron-sulfur cluster FX in the Photosystem I core protein of Synechococcus 6301. The Mössbauer spectrum of FX in the oxidized state shows an isomer shift of 0.42 mm/s, which is in good agreement with the 0.43 mm/s isomer shift found in [4Fe-4S] proteins but not with the isomer shift of 0.26 mm/s found in [2Fe-2S] proteins. In the reduced state the spectrum is asymmetrically broadened at 80 K, indicating the presence of two very closely spaced doublets with an average isomer shift of 0.55 mm/s, which is also in agreement with [4Fe-4S] proteins. At 4.2 K, the spectrum exhibits broadening and magnetic splitting similar to what is observed for [4Fe-4S] proteins and quite unlike [2Fe-2S] proteins. Given the assumption that the iron atoms of FX are tetrahedrally coordinated with sulfur ligands, the data strongly support the assignment of FX as a [4Fe-4S] cluster.
我们报告了对集胞藻6301光系统I核心蛋白中低电位铁硫簇FX的穆斯堡尔研究结果。氧化态下FX的穆斯堡尔谱显示同质异能位移为0.42毫米/秒,这与在[4Fe-4S]蛋白中发现的0.43毫米/秒的同质异能位移相符,但与在[2Fe-2S]蛋白中发现的0.26毫米/秒的同质异能位移不符。在还原态下,该谱在80K时不对称展宽,表明存在两个间距非常近的双峰,平均同质异能位移为0.55毫米/秒,这也与[4Fe-4S]蛋白相符。在4.2K时,该谱表现出展宽和磁分裂,类似于在[4Fe-4S]蛋白中观察到的情况,与[2Fe-2S]蛋白截然不同。假设FX的铁原子与硫配体呈四面体配位,这些数据有力地支持了将FX归为[4Fe-4S]簇的结论。