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Outer membrane cytochromes/flavin interactions in Shewanella spp.—A molecular perspective

机译:希瓦氏菌属中的外膜细胞色素/黄素相互作用。

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摘要

Extracellular electron transfer (EET) is intrinsically associated with the core phenomena of energy harvesting/energy conversion in natural ecosystems and biotechnology applications. However, the mechanisms associated with EET are complex and involve molecular interactions that take place at the “bionano interface” where biotic/abiotic interactions are usually explored. This work provides molecular perspective on the electron transfer mechanism(s) employed by Shewanella oneidensis MR-1. Molecular docking simulations were used to explain the interfacial relationships between two outer-membrane cytochromes (OMC) OmcA and MtrC and riboflavin (RF) and flavin mononucleotide (FMN), respectively. OMC-flavin interactions were analyzed by studying the electrostatic potential, the hydrophilic/hydrophobic surface properties, and the van der Waals surface of the OMC proteins. As a result, it was proposed that the interactions between flavins and OMCs are based on geometrical recognition event. The possible docking positions of RF and FMN to OmcA and MtrC were also shown.
机译:细胞外电子转移(EET)与自然生态系统和生物技术应用中能量收集/能量转换的核心现象具有内在联系。然而,与EET相关的机制很复杂,并且涉及在“ bionano界面”上发生的分子相互作用,通常研究生物/非生物相互作用。这项工作提供了分子生物学的观点,由Shewanella oneidensis MR-1使用电子传递机制。分子对接模拟被用来分别解释两个外膜细胞色素(OMC)OmcA和MtrC与核黄素(RF)和黄素单核苷酸(FMN)之间的界面关系。通过研究OMC蛋白的静电势,亲水/疏水表面特性和范德华表面,分析了OMC-黄素相互作用。结果,提出黄素与OMC之间的相互作用是基于几何识别事件。还显示了RF和FMN与OmcA和MtrC的可能对接位置。

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