Kuila D, Schoonover J R, Dyer R B, Batie C J, Ballou D P, Fee J A, Woodruff W H
Isotope and Structural Chemistry Division, Los Alamos National Laboratory, NM 87545.
Biochim Biophys Acta. 1992 Dec 7;1140(2):175-83. doi: 10.1016/0005-2728(92)90007-o.
Resonance Raman (RR) spectra are reported for the [2Fe-2S] Rieske protein from Thermus thermophilus (TRP) and phthalate dioxygenase from Pseudomonas cepacia (PDO) as a function of pH and excitation wavelength. Depolarization ratio measurements are presented for the RR spectra of spinach ferredoxin (SFD), TRP, and PDO at 74 K. By comparison with previously published RR spectra of SFD, we suggest reasonable assignments for the spectra of TRP and PDO. The spectra of PDO exhibit virtually no pH dependence, while significant changes are observed in TRP spectra upon raising the pH from 7.3 to 10.1. One band near 270 cm-1, which consists of components at 266 cm-1 and 274 cm-1, is attributed to Fe(III)-N(His) stretching motions. We suggest that these two components arise from conformers having a protonated-hydrogen-bonded imidazole (266 cm-1) and deprotonated-hydrogen-bonded imidazolate (274 cm-1) coordinated to the Fe/S cluster and that the relative populations of the two species are pH-dependent; a simple structural model is proposed to account for this behavior in the respiratory-type Rieske proteins. In addition, we have identified RR peaks associated with the bridging and terminal sulfur atoms of the Fe-S-N cluster. The RR excitation profiles of peaks associated with these atoms are indistinguishable from each other in TRP (pH 7.3) and PDO and differ greatly from those of [2Fe-2S] ferrodoxins. The profiles are bimodal with maxima near 490 nm and > approx. 550 nm. By contrast, bands associated with the Fe-N stretch show a somewhat different enhancement profile. Upon reduction, RR peaks assigned to Fe-N vibrations are no longer observed, with the resulting spectrum being remarkably similar to that reported for reduced adrenodoxin. This indicates that only modes associated with Fe-S bonds are observed and supports the idea that the reducing electron resides on the iron atom coordinated to the two histidine residues. Taken as a whole, the data are consistent with an St2FeSb2Fe[N(His)]t2 structure for the Rieske-type cluster.
报道了嗜热栖热菌[2Fe-2S] Rieske蛋白(TRP)和洋葱伯克霍尔德菌邻苯二甲酸双加氧酶(PDO)的共振拉曼(RR)光谱随pH值和激发波长的变化情况。给出了菠菜铁氧化还原蛋白(SFD)、TRP和PDO在74K时RR光谱的去偏振比测量结果。通过与先前发表的SFD的RR光谱比较,我们对TRP和PDO的光谱提出了合理的归属。PDO的光谱几乎没有pH依赖性,而当pH从7.3升高到10.1时,TRP光谱中观察到显著变化。一个位于270 cm-1附近的谱带,由266 cm-1和274 cm-1处的成分组成,归因于Fe(III)-N(His)伸缩振动。我们认为这两个成分来自与Fe/S簇配位的具有质子化氢键咪唑(266 cm-1)和去质子化氢键咪唑盐(274 cm-1)的构象异构体,并且这两种物种的相对丰度是pH依赖性的;提出了一个简单的结构模型来解释呼吸型Rieske蛋白中的这种行为。此外,我们还确定了与Fe-S-N簇的桥连和末端硫原子相关的RR峰。与这些原子相关的峰的RR激发谱在TRP(pH 7.3)和PDO中彼此无法区分,并且与[2Fe-2S]铁氧化还原蛋白的激发谱有很大不同。这些谱是双峰的,最大值在490 nm附近和大于约550 nm处。相比之下,与Fe-N伸缩相关的谱带显示出略有不同的增强谱。还原后,不再观察到归属于Fe-N振动的RR峰,所得光谱与报道的还原肾上腺铁氧化还原蛋白的光谱非常相似。这表明只观察到与Fe-S键相关的模式,并支持还原电子位于与两个组氨酸残基配位的铁原子上的观点。总体而言,这些数据与Rieske型簇的St2FeSb2Fe[N(His)]t2结构一致。