Frontiers Science Centre for Synthetic Biology (Ministry of Education), and Key Laboratory of Systems Bioengineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin, China.
College of Life Science, Langfang Normal University, Langfang, Hebei, China.
Biotechnol Bioeng. 2024 Jun;121(6):2002-2012. doi: 10.1002/bit.28702. Epub 2024 Mar 30.
The physiological role of Geobacter sulfurreducens extracellular cytochrome filaments is a matter of debate and the development of proposed electronic device applications of cytochrome filaments awaits methods for large-scale cytochrome nanowire production. Functional studies in G. sulfurreducens are stymied by the broad diversity of redox-active proteins on the outer cell surface and the redundancy and plasticity of extracellular electron transport routes. G. sulfurreducens is a poor chassis for producing cytochrome nanowires for electronics because of its slow, low-yield, anaerobic growth. Here we report that filaments of the G. sulfurreducens cytochrome OmcS can be heterologously expressed in Shewanella oneidensis. Multiple lines of evidence demonstrated that a strain of S. oneidensis, expressing the G. sulfurreducens OmcS gene on a plasmid, localized OmcS on the outer cell surface. Atomic force microscopy revealed filaments with the unique morphology of OmcS filaments emanating from cells. Electron transfer to OmcS appeared to require a functional outer-membrane porin-cytochrome conduit. The results suggest that S. oneidensis, which grows rapidly to high culture densities under aerobic conditions, may be suitable for the development of a chassis for producing cytochrome nanowires for electronics applications and may also be a good model microbe for elucidating cytochrome filament function in anaerobic extracellular electron transfer.
希瓦氏菌属细胞外细胞色素丝的生理作用一直存在争议,而细胞色素丝在电子器件应用方面的发展也有待于大规模生产细胞色素纳米线的方法。由于其缓慢、低产、厌氧生长的特点,希瓦氏菌属作为生产电子器件用细胞色素纳米线的底盘菌并不理想。本研究报告称,希瓦氏菌属细胞色素 OmcS 的丝可以在 Oneidensis Shewanella 中异源表达。多项证据表明,在质粒上表达希瓦氏菌属 OmcS 基因的 Oneidensis Shewanella 菌株将 OmcS 定位于细胞外表面。原子力显微镜显示,从细胞中伸出的 OmcS 丝状具有独特的形态。电子转移到 OmcS 似乎需要一个功能性的外膜孔蛋白-细胞色素导管。结果表明,在好氧条件下快速生长到高培养密度的 Oneidensis Shewanella 可能适合开发用于电子应用的细胞色素纳米线生产底盘菌,并且也可能是阐明厌氧细胞外电子转移中细胞色素丝功能的良好模式微生物。