Link T A, Hatzfeld O M, Unalkat P, Shergill J K, Cammack R, Mason J R
Universitätsklinikum Frankfurt, Frankfurt/Main, Germany.
Biochemistry. 1996 Jun 11;35(23):7546-52. doi: 10.1021/bi960004+.
Two different types of "Rieske" [2Fe-2S] clusters have been observed in proteins, one in the bc complexes of the respiratory chain and the other in bacterial dioxygenases. We have compared the circular dichroic (CD) spectra and redox properties of the water soluble fragment of the Rieske center of the bovine heart mitochondrial bc1 complex (ISF) and of the ferredoxin from benzene dioxygenase in Pseudomonas putida ML2 (FDBED). Spinach ferredoxin was also measured for comparison. The redox potential of both proteins could be determined in solution by cyclic voltammetry (CV) and by CD-monitored spectroelectrochemistry using a specially constructed optically transparent thin layer (OTTLE) cell. Whereas the redox potential of the ISF (+312 +/- 5 mV at pH 7.0) depended both on the pH above pH 7 and on the ionic strength, the redox potential of the FDBED (-155 +/- 5 mV at pH 7.0) was observed to be independent of pH and ionic strength. The ISF showed a marked dependence of its redox potential on temperature, while the FDBED showed no temperature dependence. The entropy of the redox reaction delta S degrees rc was calculated as -88 +/- 11 J K-1 mol-1 for the bc1 Rieske center and approximately 0 J K-1 mol-1 for the FdBED. The CD spectra of Rieske type clusters are significantly different from those of plant type [2Fe-2S] ferredoxins. A strong negative CD band is present at 20 000 cm-1 (500 nm) in all reduced Rieske clusters. The possible assignment of this band is discussed as arising from the highest energy magnetically allowed d --> d transition (dz2 --> dxz) of the FeII site. If so, this band is highly indicative of the distortion of the ligand field of the FeII site.
在蛋白质中观察到两种不同类型的“ Rieske” [2Fe-2S]簇,一种存在于呼吸链的bc复合物中,另一种存在于细菌双加氧酶中。我们比较了牛心线粒体bc1复合物(ISF)的Rieske中心的水溶性片段和恶臭假单胞菌ML2中苯双加氧酶的铁氧还蛋白(FDBED)的圆二色性(CD)光谱和氧化还原特性。还测量了菠菜铁氧还蛋白以作比较。两种蛋白质的氧化还原电位可以通过循环伏安法(CV)以及使用特殊构造的光学透明薄层(OTTLE)池的CD监测光谱电化学法在溶液中测定。虽然ISF的氧化还原电位(在pH 7.0时为+312 +/- 5 mV)在pH高于7时既取决于pH值又取决于离子强度,但观察到FDBED的氧化还原电位(在pH 7.0时为-155 +/- 5 mV)与pH和离子强度无关。ISF的氧化还原电位对温度有明显依赖性,而FDBED则没有温度依赖性。bc1 Rieske中心的氧化还原反应熵ΔS°rc计算为-88 +/- 11 J K-1 mol-1,而FdBED约为0 J K-1 mol-1。Rieske型簇的CD光谱与植物型[2Fe-2S]铁氧还蛋白的光谱有显著差异。在所有还原的Rieske簇中,在20000 cm-1(500 nm)处都有一个很强的负CD带。讨论了该带可能的归属,认为是由FeII位点的最高能量磁允许d→d跃迁(dz2→dxz)引起的。如果是这样,该带高度指示了FeII位点配体场的畸变。