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合成孔蛋白增强细胞外电子传递和生物电能输出。

Enhancement of extracellular electron transfer and bioelectricity output by synthetic porin.

机构信息

Laboratory of Bioelectron based Biorefinery, Biofuels Institute, School of the Environment, Jiangsu University, Zhenjiang, Jiangsu Province 212013, China.

出版信息

Biotechnol Bioeng. 2013 Feb;110(2):408-16. doi: 10.1002/bit.24732. Epub 2012 Oct 5.

Abstract

The microbial fuel cell (MFC), is a promising environmental biotechnology for harvesting electricity energy from organic wastes. However, low bacterial membrane permeability of electron shuttles is a limiting factor that restricts the electron shuttle-mediated extracellular electron transfer (EET) from bacteria to electrodes, thus the electricity power output of MFCs. To this end, we heterologously expressed a porin protein OprF from Pseudomonas aeruginosa PAO1 into Escherichia coli, which dramatically increased its membrane permeability, delivering a much higher current output in MFCs than its parental strain (BL21). We found that the oprF-expression strain showed more efficient EET than its parental strain. More strikingly, the enhanced membrane permeability also rendered the oprF-expression strain an efficient usage of riboflavin as the electron shuttle, whereas its parental strain was incapable of. Our results substantiated that membrane permeability is crucial for the efficient EET, and indicated that the expression of synthetic porins could be an efficient strategy to enhance bioelectricity generation by microorganisms (including electrogenic bacteria) in MFCs.

摘要

微生物燃料电池 (MFC) 是一种很有前途的环境生物技术,可从有机废物中获取电能。然而,电子穿梭体在细菌中的细胞膜透过率低是一个限制因素,限制了电子穿梭体介导的细菌到电极的细胞外电子转移 (EET),从而限制了 MFC 的电能输出。为此,我们将绿脓假单胞菌 PAO1 的一种孔蛋白 OprF 异源表达到大肠杆菌中,这大大增加了其细胞膜透过率,使其在 MFC 中的电流输出比亲本菌株 (BL21) 高得多。我们发现表达 oprF 的菌株比其亲本菌株具有更高的 EET 效率。更引人注目的是,增强的膜透过率还使 oprF 表达菌株能够有效地利用核黄素作为电子穿梭体,而其亲本菌株则不能。我们的结果证实了膜透过率对于高效的 EET 至关重要,并表明合成孔蛋白的表达可能是增强 MFC 中微生物(包括产电菌)生物电能产生的有效策略。

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