细胞外
周质间隙
细菌外膜
舍瓦内拉
希瓦氏菌属
电子传输链
电子受体
地杆菌
无氧呼吸
电子转移
生物化学
细胞呼吸
化学
细菌
呼吸链
生物物理学
膜
生物
线粒体
光化学
大肠杆菌
遗传学
基因
生物膜
作者
Katrin Richter,Marcus Schicklberger,Johannes Gescher
摘要
An extension of the respiratory chain to the cell surface is necessary to reduce extracellular electron acceptors like ferric iron or manganese oxides. In the past few years, more and more compounds were revealed to be reduced at the surface of the outer membrane of Gram-negative bacteria, and the list does not seem to have an end so far. Shewanella as well as Geobacter strains are model organisms to discover the biochemistry that enables the dissimilatory reduction of extracellular electron acceptors. In both cases, c-type cytochromes are essential electron-transferring proteins. They make the journey of respiratory electrons from the cytoplasmic membrane through periplasm and over the outer membrane possible. Outer membrane cytochromes have the ability to catalyze the last step of the respiratory chains. Still, recent discoveries provided evidence that they are accompanied by further factors that allow or at least facilitate extracellular reduction. This review gives a condensed overview of our current knowledge of extracellular respiration, highlights recent discoveries, and discusses critically the influence of different strategies for terminal electron transfer reactions.
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