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Enhancement of Survival and Electricity Production in an Engineered Bacterium by Light-Driven Proton Pumping

机译:光驱动质子泵提高工程菌的生存和电力生产

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摘要

Microorganisms can use complex photosystems or light-dependent proton pumps to generate membrane potential and/or reduce electron carriers to support growth. The discovery that proteorhodopsin is a light-dependent proton pump that can be expressed readily in recombinant bacteria enables development of new strategies to probe microbial physiology and to engineer microbes with new light-driven properties. Here, we describe functional expression of proteorhodopsin and light-induced changes in membrane potential in the bacterium Shewanella oneidensis strain MR-1. We report that there were significant increases in electrical current generation during illumination of electrochemical chambers containing S. oneidensis expressing proteorhodopsin. We present evidence that an engineered strain is able to consume lactate at an increased rate when it is illuminated, which is consistent with the hypothesis that proteorhodopsin activity enhances lactate uptake by increasing the proton motive force. Our results demonstrate that there is coupling of a light-driven process to electricity generation in a nonphotosynthetic engineered bacterium. Expression of proteorhodopsin also preserved the viability of the bacterium under nutrient-limited conditions, providing evidence that fulfillment of basic energy needs of organisms may explain the widespread distribution of proteorhodopsin in marine environments.
机译:微生物可以使用复杂的光系统或依赖光的质子泵来产生膜电位和/或减少电子载体以支持生长。蛋白视紫红质是一种光依赖性质子泵,可以很容易地在重组细菌中表达,这一发现使人们能够开发出新的策略,以探测微生物生理学并设计具有新的光驱动特性的微生物。在这里,我们描述蛋白视紫红质蛋白的功能性表达和光诱导的沙伊氏菌Oneidensis菌株MR-1的膜电位变化。我们报告说,在有表达蛋白视紫红质的S. oneidensis的电化学室的照明过程中,电流的产生显着增加。我们提供的证据表明,工程菌株在被照射时能够以增加的速率消耗乳酸,这与蛋白视紫红质活性通过增加质子动力来增强乳酸摄取的假设是一致的。我们的结果表明,在非光合作用的细菌中,光驱动过程与发电之间存在耦合。蛋白视紫红质的表达还可以在营养有限的条件下保持细菌的生存能力,这提供了生物体基本能量需求的满足可以解释蛋白视紫红质在海洋环境中的广泛分布的证据。

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