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Structural Analysis of Alternative Complex III in the Photosynthetic Electron TransfeChain of Chloroflexus aurantiacus

机译:桔绿弯曲挠菌光合电子传递链中替代配合物III的结构分析

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The green photosynthetic bacterium Chloroflexus aurantiacus, which belongs to the phylum of filamentous anoxygenic phototrophs, does not contain a cytochrome be or bf type complex which is found in all other known groups of phototrophs. This suggests that a functional replacement exists to link the reaction center photochemistry to cyclic electron transfer as well as respiration. Earlier work identified a potential substitute of the cytochrome be complex, now named alternative complex III (ACIII), which has been purified from C. aurantiacus, identified, and characterized. ACIII functions as a menaquinol:auracyanin oxido-reductase in the photosynthetic electron transfer chain, and a related but distinct complex functions in respiratory electron flow to a terminal oxidase. In this work, we focus on elucidating the structure of photosynthetic ACIII. We found that ACIII is an integral membrane protein complex of ~300 kDa that consists of eight subunits of seven different types. Among them, there are four metalloprotein subunits, including a 113 kDa iron—sulfur cluster-containing polypeptide, a 25 kDa penta-heme c-containing subunit, and two 20 kDa monoheme c-containing subunits in the form of a homodimer. A variety of analytical techniques were employed in determining the ACIII substructure, including HPLC combined with ESI-MS, metal analysis, potentiometric titration, and intensity analysis of heme staining SDS-PAGE. A preliminary structural model of ACIII is proposed on the basis of the analytical data and chemical cross-linking in tandem with mass analysis using MALDI-TOF, as well as transmembrane and transit peptide analysis.
机译:绿色的光合细菌Chloroflexus aurantiacus,属于丝状产氧光养菌的门,不包含在所有其他已知光养菌组中发现的细胞色素be或bf型复合物。这表明存在功能替代物,以将反应中心的光化学与循环电子转移以及呼吸作用联系起来。较早的工作确定了细胞色素可能是复合物的潜在替代物,现在称为替代复合物III(ACIII),该复合物已从金黄色葡萄球菌中纯化,鉴定和鉴定。 ACIII在光合作用的电子转移链中起薄荷脑醇:金菁花青素的氧化还原酶的作用,在呼吸电子流向末端氧化酶的过程中,有一个相关但截然不同的复杂功能。在这项工作中,我们专注于阐明光合作用ACIII的结构。我们发现ACIII是约300 kDa的完整膜蛋白复合物,由7种不同类型的8个亚基组成。其中,有四个金属蛋白亚基,包括一个113 kDa的含铁硫簇的多肽,一个25 kDa的含五血红素c的亚基和两个同型二聚体形式的20 kDa的含单血红素c的亚基。各种分析技术被用于确定ACIII的亚结构,包括结合ESI-MS的HPLC,金属分析,电位滴定和血红素染色SDS-PAGE的强度分析。在分析数据和化学交联与使用MALDI-TOF进行质量分析以及跨膜和转运肽分析的基础上,提出了ACIII的初步结构模型。

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