...
首页> 外文期刊>Nanotechnology >His/Met heme ligation in the PioA outer membrane cytochrome enabling light-driven extracellular electron transfer byRhodopseudomonas palustrisTIE-1
【24h】

His/Met heme ligation in the PioA outer membrane cytochrome enabling light-driven extracellular electron transfer byRhodopseudomonas palustrisTIE-1

机译:他/遇到了Pioa外膜细胞色素中的血红素结扎,使轻型驱动的细胞外电子转移Byrhodopseudomonas Palustride-1

获取原文
获取原文并翻译 | 示例

摘要

A growing number of bacterial species are known to move electrons across their cell envelopes. Naturally this occurs in support of energy conservation and carbon-fixation. For biotechnology it allows electron exchange between bacteria and electrodes in microbial fuel cells and during microbial electrosynthesis. In this contextRhodopseudomonas palustrisTIE-1 is of much interest. These bacteria respond to light by taking electrons from their external environment, including electrodes, to drive CO2-fixation. The PioA cytochrome, that spans the bacterial outer membrane, is essential for this electron transfer and yet little is known about its structure and electron transfer properties. Here we reveal the tenc-type hemes of PioA are redox active across the window +250 to -400 mV versus Standard Hydrogen Electrode and that the hemes with most positive reduction potentials have His/Met and His/H2O ligation. These chemical and redox properties distinguish PioA from the more widely studied family of MtrA outer membrane decaheme cytochromes with ten His/His ligated hemes. We predict a structure for PioA in which the hemes form a chain spanning the longest dimension of the protein, from Heme 1 to Heme 10. Hemes 2, 3 and 7 are identified as those most likely to have His/Met and/or His/H2O ligation. Sequence analysis suggests His/Met ligation of Heme 2 and/or 7 is a defining feature of decaheme PioA homologs from over 30 different bacterial genera. His/Met ligation of Heme 3 appears to be less common and primarily associated with PioA homologs from purple non-sulphur bacteria belonging to the alphaproteobacteria class.
机译:已知一种越来越多的细菌物种在其细胞包络上移动电子。当然,这发生在节能和碳固定的支持下。对于生物技术,它允许微生物燃料电池中的细菌和电极之间的电子交换和微生物电气合成。在这个Contextrhodopseudomonasalas Palustride-1非常感兴趣。这些细菌通过从外部环境,包括电极的外部环境而响应光,以驱动CO2固定。跨越细菌外膜的Pioa细胞色素对于这种电子转移至关重要,但大概是关于其结构和电子转移性的少数人。在这里,我们揭示了PioA的Tenc型血液氧化还原在窗口+250至-400mV与标准氢电极上,并且具有最阳性降低电位的血液具有他/满足和他/ H2O结扎。这些化学和氧化还原特性区分Pioa与较大的MTRA外膜褥疮细胞瘤系列与十个他/他的连接血清。我们预测一种结构的一种结构,其中血液形成跨越蛋白质的最长尺寸的链,从血红素1到血红素10.血液2,3和7被鉴定为最有可能具有他/遇见和/或他/ /或他/ H2O结扎。序列分析表明他/满月的HEME 2和/或7的连接是来自超过30种不同的细菌属的Deaheme PioA同源物的定义特征。他/满足血红素3的结扎似乎不太常见,主要与属于alphaproteobacteria类的紫色非硫细菌的PioA同源物相关。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号