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首页> 外文期刊>The Journal of biological chemistry >New Functional Sulfide Oxidase-Oxygen Reductase Supercomplex in the Membrane of the Hyperthermophilic Bacterium Aquifex aeolicus
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New Functional Sulfide Oxidase-Oxygen Reductase Supercomplex in the Membrane of the Hyperthermophilic Bacterium Aquifex aeolicus

机译:新型官能硫化物氧化酶 - 氧还原酶超复合体在高热细菌血管内血管内肠道膜中

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Aquifex aeolicus, a hyperthermophilic and microaerophilic bacterium, obtains energy for growth from inorganic compounds alone. It was previously proposed that one of the respiratory pathways in this organism consists of the electron transfer from hydrogen sulfide (H2S) to molecular oxygen. H2S is oxidized by the sulfide quinone reductase, a membrane-bound flavoenzyme, which reduces the quinone pool. We have purified and characterized a novel membrane-bound multienzyme supercomplex that brings together all the molecular components involved in this bioenergetic chain. Our results indicate that this purified structure consists of one dimeric bc1 complex (complex III), one cytochrome c oxidase (complex IV), and one or two sulfide quinone reductases as well as traces of the monoheme cytochrome c555 and quinone molecules. In addition, this work strongly suggests that the cytochrome c oxidase in the supercomplex is a ba3-type enzyme. The supercomplex has a molecular mass of about 350 kDa and is enzymatically functional, reducing O2 in the presence of the electron donor, H2S. This is the first demonstration of the existence of such a respirasome carrying a sulfide oxidase-oxygen reductase activity. Moreover, the kinetic properties of the sulfide quinone reductase change slightly when integrated in the supercomplex, compared with the free enzyme. We previously purified a complete respirasome involved in hydrogen oxidation and sulfur reduction from Aquifex aeolicus. Thus, two different bioenergetic pathways (sulfur reduction and sulfur oxidation) are organized in this bacterium as supramolecular structures in the membrane. A model for the energetic sulfur metabolism of Aquifex aeolicus is proposed.
机译:Aquifex Aeolicus,一种超嗜热和微苯酚细菌,获得单独从无机化合物生长的能量。之前提出,该生物体中的一种呼吸道途径由来自硫化氢(H 2 S)的电子转移到分子氧。 H 2 S通过硫化物醌还原酶,一种膜结合的黄酮氧化,这减少了醌池。我们已经纯化并表征了一种新型膜结合的偏见超复杂,将所有涉及该生物能链中的所有分子组分均匀。我们的结果表明,该纯化结构由一种二聚体BC1复合物(复合III),一种细胞色素C氧化酶(复合IV)和一种或两种硫化物醌还原酶以及单层细胞色素C555和醌分子的痕量组成。此外,这项工作强烈表明超复杂中的细胞色素C氧化酶是BA3型酶。超复杂的分子量为约350kDa,酶活性,在电子供体H 2 S存在下减少O 2。这是第一次证明存在携带硫化氧化酶 - 氧还原酶活性的这种呼吸体的存在性。此外,与游离酶相比,在超自然中,硫化物醌还原酶的动力学性能略微发生变化。我们以前纯化了一种完全呼吸,参与氢氧化和硫磺Aquifex Aeolicus的硫磺。因此,在该细菌中组织了两种不同的生物能量途径(硫氧化和硫氧化),作为膜中的超分子结构。提出了Aquifex Aeolicus的能量硫代谢模型。

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