首页> 外文期刊>Biochemistry >Membrane-bound electron transfer chain of the thermohalophilic bacterium Rhodothermus marinus: a novel multihemic cytochrome bc, a new complex III.
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Membrane-bound electron transfer chain of the thermohalophilic bacterium Rhodothermus marinus: a novel multihemic cytochrome bc, a new complex III.

机译:嗜盐嗜热细菌海藻的膜结合电子转移链:一种新型的多色细胞色素BC,一种新的复合物III。

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A novel multihemic cytochrome bc complex was isolated from the membranes of Rhodothermus marinus. It is a complex with a minimum of three subunits (43, 27, and 18 kDa), containing five low-spin heme centers of the B and C types, in a 1:4 ratio. All the C-type hemes are in the same subunit (27 kDa). Three distinct redox transitions, at 235, 80, and -45 mV, were observed by visible redox titrations. The first involves one B- and one C-type hemes, and in the other two transitions one and two C-type hemes are involved, respectively. Spectroscopic data strongly suggest that the two hemes intervening in the last transition are in van der Waals contact, yielding a split Soret band. Electron paramagnetic resonance spectra of the oxidized complex show resonances of five low-spin ferric heme centers. Upon reduction with ascorbate, all these resonances vanish and a new one attributed to the last pair of hemes appears. A [3Fe-4S]1+/0 center copurifies with this complex, having a high reduction potential of +140 mV. No Rieske-type centers are detected in R. marinus and no effect is observed in the respiratory rates when the typical bc1 complex inhibitors are present, suggesting that such a complex is absent in R. marinus [Pereira et al. (1994) FEBS Lett. 352, 327-330]. The newly isolated cytochrome bc complex has quinol:cytochrome c or high-potential iron-sulfur protein (HiPIP) oxidoreductase activity, being a functional analogue of the canonical bc1 complexes; i.e., it is the complex III in R. marinus. This complex plays a central role in this bacterium's electron-transfer chain, coupling the electron transfer between the quinols reduced by the dehydrogenases and the HiPIP, the final electron donor to the terminal oxidases [Pereira, M. M., Carita, J. N., and Teixeira, M. (1999) Biochemistry 38, 1276-1283].
机译:从海生罗得鱼的膜中分离出一种新型的多色细胞色素bc复合物。它是一个复杂的系统,具有至少三个亚基(43、27和18 kDa),包含五个B型和C型低旋血红素中心,比例为1:4。所有C型血红素都在同一亚基(27 kDa)中。通过可见的氧化还原滴定观察到三个不同的氧化还原转变,分别为235、80和-45 mV。第一个涉及一个B型和一个C型血红素,在其他两个过渡中分别涉及一个和两个C型血红素。光谱数据强烈表明,在最后一个跃迁中插入的两个血红素处于范德华接触状态,产生了一条分裂的索雷特谱带。氧化复合物的电子顺磁共振光谱显示五个低旋铁血红素中心的共振。经抗坏血酸还原后,所有这些共振消失,出现了归因于最后一对血红素的新共振。 [3Fe-4S] 1 + / 0中心与该络合物共纯化,具有+140 mV的高还原电位。当存在典型的bc1复合物抑制剂时,在R. marinus中未检测到Rieske型中心,并且在呼吸频率上未观察到任何影响,这表明在R. marinus中不存在这种复合物[Pereira等。 (1994)FEBS Lett。 352,327-330]。新分离的细胞色素bc复合物具有quinol:细胞色素c或高电位铁硫蛋白(HiPIP)氧化还原酶活性,是典型的bc1复合物的功能类似物。即,它是R. marinus中的复合物III。该复合物在该细菌的电子转移链中起着核心作用,将脱氢酶还原的喹诺醇与末端氧化酶的最终电子供体[Hieira] HiPIP [Pereira,MM,Carita,JN和Teixeira,M (1999)Biochemistry 38,1276-1283]。

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