Specific interaction of resorufin to outer-membrane cytochrome OmcE of Geobacter sulfurreducens: a new insight on artificial electron mediators in promoting extracellular electron transfer

硫化地杆菌 周质间隙 电子转移 细胞色素 细菌外膜 生物物理学 化学 电子受体 地杆菌 电子传输链 雷苏林 生物化学 生物 生物膜 光化学 大肠杆菌 细菌 基因 遗传学
作者
Baoli Qin,Guiqin Yang,Xiaochun Chen,Xian Wu,Yanlun Fang,Xiaoyun Quan,Zhuang Li
出处
期刊:Water Research [Elsevier]
卷期号:266: 122403-122403 被引量:2
标识
DOI:10.1016/j.watres.2024.122403
摘要

Bioelectrochemical system (BES) is a unique biotechnology for wastewater treatment and energy recovery, and extracellular electron transfer (EET) between microbe and electrode is the key to optimize the performance of BESs. Resazurin is an effective artificial compound that can promote EET in BESs, but the way how it transports electrons is not fully understood. In this study differential pulse voltammetry revealed that the redox potential of resorufin (RR) (intermediate of resazurin reduction, actual electron mediator) within Geobacter sulfurreducens biofilm was positively shifted by 100 mV than that of free RR, and this shift was attenuated by the mutation of outer-membrane cytochrome gene omcE but not by omcS and omcZ mutation, indicating that RR specifically interacted with OmcE. By using heterologously expressed OmcE monomers in Escherichia coli, it was found that RR bonded with OmcE monomers with a moderate intensity (dissociation constant of 720 nM), and their interaction obviously increased the content of α helix in OmcE monomers. Biomolecular analysis indicated that heme II of OmcE monomer might be the binding site for RR (binding energy of -7.01 kJ/mol), which were favorable for electron transfer within OmcE-RR complex. Comparative transcriptomics showed that RZ addition significantly upregulated the expression of omcE, periplasmic cytochrome gene ppcB, and outer-membrane genes omaB, ombB and omcB, thus, it was hypothesized that OmcE-bound RR might serve as potential electron acceptor of OmbB-OmaB-OmcB porin complex which passes electrons across outer membrane. Our work demonstrated a new pathway of artificial electron mediators in facilitating EET in Geobacter species, which may guide the application of electron mediator in improving the performance of BESs.
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