揭示中等嗜酸性铁氧化剂的电子转移链:来源于Ferrovum sp.PN-J47-F6的重组HiPIP-41、CytC-18和CytC-78的表征。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Sophie R. Ullrich, Helena Fuchs, Michael Schlömann
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引用次数: 0

摘要

由于好氧亚铁氧化的低能量产率,从供体到受体对的有效电子转移对嗜酸性和中性铁氧化剂提出了必要的要求。在这些细菌中,所涉及的周质电子载体非常多样化,并显示出对各自热力学约束的适应性,例如极端嗜酸性硫杆菌属的更正的氧化还原电位。Ferrovum属中等嗜酸性成员的呼吸链候选者与它们的嗜中性铁氧化亲属和亲缘关系较远的酸性硫杆菌有相似之处。我们检查了我们以前关于Ferrovum中潜在电子转移链的基于组学的结论。通过表征三种氧化还原蛋白候选者CytC-18,在大肠杆菌中作为重组蛋白产生的菌株PN-J47-F6的CytC-78和HiPIP-41。基于UV/Vis的氧化还原分析表明,HiPIP-41具有非常正的氧化还原电势,而CytC-18和CytC-78的氧化还原电位比酸性硫杆菌中的对应物更负。远西方点印迹显示了所有三种重组氧化还原蛋白之间的相互作用,而氧化还原分析显示了从HiPIP--41到任何一种细胞色素的电子转移。总之,CytC-18、CytC-78和HiPIP-41确实代表了Ferrovum sp.PN-J4-F6中电子转移的非常可能的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shedding light on the electron transfer chain of a moderately acidophilic iron oxidizer: characterization of recombinant HiPIP-41, CytC-18 and CytC-78 derived from Ferrovum sp. PN-J47-F6

Efficient electron transfer from the donor to the acceptor couple presents a necessary requirement for acidophilic and neutrophilic iron oxidizers due to the low energy yield of aerobic ferrous iron oxidation. Involved periplasmic electron carriers are very diverse in these bacteria and show adaptations to the respective thermodynamic constraints such as a more positive redox potential reported for extreme acidophilic Acidithiobacillus spp. Respiratory chain candidates of moderately acidophilic members of the genus Ferrovum share similarities with both their neutrophilic iron oxidizing relatives and the more distantly related Acidithiobacillus spp. We examined our previous omics-based conclusions on the potential electron transfer chain in Ferrovum spp. by characterizing the three redox protein candidates CytC-18, CytC-78 and HiPIP-41 of strain PN-J47-F6 which were produced as recombinant proteins in Eschericha coli. UV/Vis-based redox assays suggested that HiPIP-41 has a very positive redox potential while redox potentials of CytC-18 and CytC-78 are more negative than their counterparts in Acidithiobacillus spp. Far Western dot blotting demonstrated interactions between all three recombinant redox proteins while redox assays showed the electron transfer from HiPIP-41 to either of the cytochromes. Altogether, CytC-18, CytC-78 and HiPIP-41 indeed represent very likely candidates of the electron transfer in Ferrovum sp. PN-J4-F6.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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