首页> 外文期刊>Biochemistry >Membrane-bound electron transfer chain of the thermohalophilic bacterium Rhodothermus marinus: characterization of the iron-sulfur centers from the dehydrogenases and investigation of the high-potential iron-sulfur protein function by in vitro recons
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Membrane-bound electron transfer chain of the thermohalophilic bacterium Rhodothermus marinus: characterization of the iron-sulfur centers from the dehydrogenases and investigation of the high-potential iron-sulfur protein function by in vitro recons

机译:嗜热嗜盐菌Rhodothermus marinus的膜结合电子转移链:从脱氢酶表征铁硫中心,并通过体外检测研究高电位铁硫蛋白功能

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Rhodothermus marinus, a thermohalophilic bacterium, has a unique electron-transfer chain, containing, besides a cbb3 and a caa3 terminal oxidases, a novel cytochrome bc complex [Pereira, M. M., Carita, J. N., and Teixeira, M. (1999) Biochemistry 38, 1268-1275]. The membrane-bound iron-sulfur centers of this bacterium were studied by electron paramagnetic resonance (EPR) spectroscopy, leading to the identification of its main electron-transfer complexes. The resonances typical for the Rieske-type centers are not detected. Clusters S1 and S3 from succinate dehydrogenase were identified; interestingly, center S3 is shown to be present in two different conformations, with g values at 2.035, 2.009, and 2.001 and at 2.025, 2.002, and 2.000. Upon addition of NADH and dithionite, EPR signals assigned to resonances characteristic of binuclear and tetranuclear clusters develop and are attributed to the iron-sulfur centers of complexes I and II. A high-potential iron-sulfur protein- (HiPIP-) type center previously detected in the membranes of this bacterium [Pereira et al. (1994) FEBS Lett. 352, 327-330] is shown to belong indeed to a canonical HiPIP. This protein was purified and extensively characterized. It is a small water-soluble protein of approximately 10 kDa, containing a single [4Fe-4S]3+/2+ cluster. The reduction potential, determined by EPR redox titrations in intact and detergent-solubilized membranes as well as by cyclic voltammetry in solution, has a pH-independent value of 260 +/- 20 mV, in the range 6-9. In vitro reconstitution of the R. marinus electron-transfer chain shows that the HiPIP plays a fundamental role in the chain, as the electron shuttle between R. marinus cytochrome bc complex and the caa3 terminal oxidase, being thus simultaneously identified a HiPIP reductase and a HiPIP oxidase.
机译:嗜热嗜热细菌海藻,具有独特的电子转移链,除cbb3和caa3末端氧化酶外,还包含新型的细胞色素bc复合物[Pereira,MM,Carita,JN,和Teixeira,M.(1999)生物化学38 ,1268-1275]。通过电子顺磁共振(EPR)光谱研究了该细菌的膜结合铁硫中心,从而鉴定了其主要电子传递复合物。未检测到Rieske型中心的典型共振。从琥珀酸脱氢酶中鉴定出簇S1和S3;有趣的是,中心S3显示为以两种不同的构型存在,g值分别为2.035、2.009和2.001,以及2.025、2.002和2.000。加入NADH和连二亚硫酸盐后,会产生分配给双核和四核团簇共振特征的EPR信号,并归因于配合物I和II的铁硫中心。以前在这种细菌的膜中发现了一种高潜力的铁硫蛋白(HiPIP-)型中心[Pereira et al.。 (1994)FEBS Lett。 [第352卷,第327-330页]显示确实属于规范HiPIP。该蛋白被纯化并广泛表征。它是一种约10 kDa的小水溶性蛋白质,包含单个[4Fe-4S] 3 + / 2 +簇。还原电位由完整膜和去污剂溶解的膜中的EPR氧化还原滴定法以及溶液中的循环伏安法确定,其非pH依赖性值为260 +/- 20 mV,范围为6-9。 R. marinus电子转移链的体外重建表明,HiPIP在该链中起着基本作用,因为R. marinus细胞色素bc复合物和caa3末端氧化酶之间的电子穿梭,因此同时鉴定了HiPIP还原酶和a HiPIP氧化酶。

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