Santos Telma C, Silva Marta A, Morgado Leonor, Dantas Joana M, Salgueiro Carlos A
UCIBIO, REQUIMTE, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.
Dalton Trans. 2015 May 28;44(20):9335-44. doi: 10.1039/c5dt00556f.
Geobacter bacteria have a remarkable respiratory versatility that includes the dissimilatory reduction of insoluble metal oxides in natural habitats and electron transfer to electrode surfaces from which electricity can be harvested. In both cases, electrons need to be exported from the cell interior to the exterior via a mechanism designated as extracellular electron transfer (EET). Several c-type cytochromes from G. sulfurreducens (Gs) were identified as key players in this process. Biochemical and biophysical data have been obtained for ten Gs cytochromes, including inner-membrane associated (MacA), periplasmic (PpcA, PpcB, PpcC, PpcD, PpcE and GSU1996) and outer membrane-associated (OmcF, OmcS and OmcZ). The redox properties of these cytochromes have been determined, except for PpcC and GSU1996. In this perspective, the reduction potentials of these two cytochromes were determined by potentiometric redox titrations followed by visible spectroscopy. The data obtained are taken together with those available for other key cytochromes to present a thorough overview of the current knowledge of Gs EET mechanisms and provide a possible rationalization for the existence of several multiheme cytochromes involved in the same respiratory pathways.
地杆菌具有显著的呼吸多样性,包括在自然栖息地中对不溶性金属氧化物的异化还原以及将电子转移到可获取电能的电极表面。在这两种情况下,电子都需要通过一种称为细胞外电子转移(EET)的机制从细胞内部输出到外部。已确定来自硫还原地杆菌(Gs)的几种c型细胞色素是这一过程的关键参与者。已获得了十种Gs细胞色素的生化和生物物理数据,包括内膜相关的(MacA)、周质的(PpcA、PpcB、PpcC、PpcD、PpcE和GSU1996)以及外膜相关的(OmcF、OmcS和OmcZ)。除了PpcC和GSU1996之外,这些细胞色素的氧化还原特性已被确定。从这个角度来看,通过电位滴定法结合可见光谱法测定了这两种细胞色素的还原电位。将获得的数据与其他关键细胞色素的现有数据结合起来,全面概述了目前关于Gs EET机制的知识,并为参与相同呼吸途径的几种多血红素细胞色素的存在提供了一种可能的合理解释。