Dantas Joana M, Campelo Luísa M, Duke Norma E C, Salgueiro Carlos A, Pokkuluri P Raj
UCIBIO - REQUIMTE, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Caparica, Portugal.
Biosciences Division, Argonne National Laboratory, Lemont, IL, USA.
FEBS J. 2015 Jun;282(11):2215-31. doi: 10.1111/febs.13269. Epub 2015 Apr 10.
The structure of cytochrome c (GSU3274) designated as PccH from Geobacter sulfurreducens was determined at a resolution of 2.0 Å. PccH is a small (15 kDa) cytochrome containing one c-type heme, found to be essential for the growth of G. sulfurreducens with respect to accepting electrons from graphite electrodes poised at -300 mV versus standard hydrogen electrode. with fumarate as the terminal electron acceptor. The structure of PccH is unique among the monoheme cytochromes described to date. The structural fold of PccH can be described as forming two lobes with the heme sandwiched in a cleft between the two lobes. In addition, PccH has a low reduction potential of -24 mV at pH 7, which is unusual for monoheme cytochromes. Based on difference in structure, together with sequence phylogenetic analysis, we propose that PccH can be regarded as a first characterized example of a new subclass of class I monoheme cytochromes. The low reduction potential of PccH may enable the protein to be redox active at the typically negative potential ranges encountered by G. sulfurreducens. Because PccH is predicted to be located in the periplasm of this bacterium, it could not be involved in the first step of accepting electrons from the electrode but is very likely involved in the downstream electron transport events in the periplasm.
确定了来自硫还原地杆菌的细胞色素c(GSU3274)即PccH的结构,分辨率为2.0 Å。PccH是一种小的(15 kDa)细胞色素,含有一个c型血红素,发现对于硫还原地杆菌以富马酸作为末端电子受体,从相对于标准氢电极处于-300 mV的石墨电极接受电子的生长过程至关重要。PccH的结构在迄今描述的单血红素细胞色素中是独特的。PccH的结构折叠可描述为形成两个叶,血红素夹在两个叶之间的裂隙中。此外,PccH在pH 7时具有-24 mV的低还原电位,这对于单血红素细胞色素来说是不寻常的。基于结构差异以及序列系统发育分析,我们提出PccH可被视为I类单血红素细胞色素新亚类的首个特征化实例。PccH的低还原电位可能使该蛋白在硫还原地杆菌通常遇到的负电位范围内具有氧化还原活性。由于预计PccH位于该细菌的周质中,它不可能参与从电极接受电子的第一步,但很可能参与周质中的下游电子传递事件。