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热三血红素细胞色素家族的热力学特性揭示了其机制和功能多样性。

Thermodynamic characterization of a triheme cytochrome family from Geobacter sulfurreducens reveals mechanistic and functional diversity.

机构信息

Requimte-Centro de Química Fina e Biotecnologia, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Caparica, Portugal.

出版信息

Biophys J. 2010 Jul 7;99(1):293-301. doi: 10.1016/j.bpj.2010.04.017.

Abstract

A family of five periplasmic triheme cytochromes (PpcA-E) was identified in Geobacter sulfurreducens, where they play a crucial role by driving electron transfer from the cytoplasm to the cell exterior and assisting the reduction of extracellular acceptors. The thermodynamic characterization of PpcA using NMR and visible spectroscopies was previously achieved under experimental conditions identical to those used for the triheme cytochrome c(7) from Desulfuromonas acetoxidans. Under such conditions, attempts to obtain NMR data were complicated by the relatively fast intermolecular electron exchange. This work reports the detailed thermodynamic characterization of PpcB, PpcD, and PpcE under optimal experimental conditions. The thermodynamic characterization of PpcA was redone under these new conditions to allow a proper comparison of the redox properties with those of other members of this family. The heme reduction potentials of the four proteins are negative, differ from each other, and cover different functional ranges. These reduction potentials are strongly modulated by heme-heme interactions and by interactions with protonated groups (the redox-Bohr effect) establishing different cooperative networks for each protein, which indicates that they are designed to perform different functions in the cell. PpcA and PpcD appear to be optimized to interact with specific redox partners involving e(-)/H(+) transfer via different mechanisms. Although no evidence of preferential electron transfer pathway or e(-)/H(+) coupling was found for PpcB and PpcE, the difference in their working potential ranges suggests that they may also have different physiological redox partners. This is the first study, to our knowledge, to characterize homologous cytochromes from the same microorganism and provide evidence of their different mechanistic and functional properties. These findings provide an explanation for the coexistence of five periplasmic triheme cytochromes in G. sulfurreducens.

摘要

在脱硫弧菌中鉴定出了一个由五个细胞周质三血红素细胞色素(PpcA-E)组成的家族,它们通过将电子从细胞质驱动到细胞外部并协助细胞外受体的还原,在电子传递中发挥关键作用。以前使用与来自脱硫单胞菌的三血红素细胞色素 c(7)相同的实验条件,通过 NMR 和可见光谱学对 PpcA 的热力学特性进行了描述。在这些条件下,由于相对较快的分子间电子交换,尝试获得 NMR 数据变得复杂。本工作在最佳实验条件下详细描述了 PpcB、PpcD 和 PpcE 的热力学特性。在这些新条件下重新进行了 PpcA 的热力学特征描述,以允许与该家族其他成员的氧化还原性质进行适当比较。这四种蛋白质的血红素还原电位均为负值,彼此不同,并涵盖不同的功能范围。这些还原电位受到血红素-血红素相互作用和与质子化基团的相互作用(氧化还原-Bohr 效应)的强烈调节,为每种蛋白质建立了不同的协同网络,这表明它们旨在在细胞中执行不同的功能。PpcA 和 PpcD 似乎经过优化,可与涉及通过不同机制进行 e(-)/H(+)转移的特定氧化还原伙伴相互作用。尽管没有发现 PpcB 和 PpcE 存在优先电子转移途径或 e(-)/H(+)偶联的证据,但它们工作电位范围的差异表明它们也可能具有不同的生理氧化还原伙伴。据我们所知,这是首次对来自同一微生物的同源细胞色素进行特征描述,并提供了它们具有不同的机制和功能特性的证据。这些发现为脱硫硫杆菌中存在五个细胞周质三血红素细胞色素提供了一种解释。

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