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Periplasmic Electron Transfer via the c-Type Cytochromes MtrA and FccA of Shewanella oneidensis MR-1

机译:通过沙瓦氏假单胞菌MR-1的c型细胞色素MtrA和FccA进行周质电子转移

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摘要

Dissimilatory microbial reduction of insoluble Fe(III) oxides is a geochemically and ecologically important process which involves the transfer of cellular, respiratory electrons from the cytoplasmic membrane to insoluble, extracellular, mineral-phase electron acceptors. In this paper evidence is provided for the function of the periplasmic fumarate reductase FccA and the decaheme c-type cytochrome MtrA in periplasmic electron transfer reactions in the gammaproteobacterium Shewanella oneidensis. Both proteins are abundant in the periplasm of ferric citrate-reducing S. oneidensis cells. In vitro fumarate reductase FccA and c-type cytochrome MtrA were reduced by the cytoplasmic membrane-bound protein CymA. Electron transfer between CymA and MtrA was 1.4-fold faster than the CymA-catalyzed reduction of FccA. Further experiments showing a bidirectional electron transfer between FccA and MtrA provided evidence for an electron transfer network in the periplasmic space of S. oneidensis. Hence, FccA could function in both the electron transport to fumarate and via MtrA to mineral-phase Fe(III). Growth experiments with a ΔfccA deletion mutant suggest a role of FccA as a transient electron storage protein.
机译:不溶性Fe(III)氧化物的异化微生物还原是一个地球化学和生态学上重要的过程,涉及将细胞呼吸的电子从细胞质膜转移到不溶的细胞外矿物相电子受体。本文提供了证据,证明了周质富马酸还原酶FccA和十碳素c型细胞色素MtrA在γ变形杆菌Shewanella oneidensis的周质电子转移反应中的功能。两种蛋白质在还原柠檬酸铁的沙门氏菌细胞的周质中都丰富。体外富马酸酯还原酶FccA和c型细胞色素MtrA被细胞质膜结合蛋白CymA还原。 CymA和MtrA之间的电子转移比CymA催化的FccA还原快1.4倍。进一步的实验表明FccA和MtrA之间存在双向电子转移,这为拟南芥的周质空间中的电子转移网络提供了证据。因此,FccA既可以在电子传递富马酸酯中,也可以在通过MtrA传递到矿物相Fe(III)中起作用。使用ΔfccA缺失突变体的生长实验表明FccA作为瞬时电子存储蛋白的作用。

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