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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >The bc(1) complex of the iron-grown acidophilic chemolithotrophic bacterium Acidithiobacillus ferrooxidans functions in the reverse but not in the forward direction. Is there a second bc(1) complex?
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The bc(1) complex of the iron-grown acidophilic chemolithotrophic bacterium Acidithiobacillus ferrooxidans functions in the reverse but not in the forward direction. Is there a second bc(1) complex?

机译:bc(1)复杂的铁生长的嗜酸性化营养细菌酸性氧化铁硫杆菌铁氧体的功能相反,而不是向前。是否有第二个bc(1)复合体?

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摘要

Acidithiobacillus ferrooxidans is an acidophilic chemolithotrophic bacterium that can grow in the presence of either a weak reductant, Fe(2+), or reducing sulfur compounds that provide more energy for growth than Fe(2+). Here we first review the latest findings about the uphill electron transfer pathway established in iron-grown A. ferrooxidans, which has been found to involve a bc(1) complex. We then provide evidence that this bc(1) complex cannot function in the forward direction (exergonic reaction), even with an appropriate substrate. A search for the sequence of the three redox subunits of the A. ferrooxidans bc(1) complex (strain ATCC 19859) in the complete genome sequence of the A. ferrooxidans ATCC 23270 strain showed the existence of two different bc(1) complexes in A. ferrooxidans. Cytochrome b and Rieske protein sequence comparisons allowed us to point out some sequence particularities of these proteins in A. ferrooxidans. Lastly, we discuss the possible reasons for the existence of two different "classical" bc(1) complexes and put forward some suggestions as to what role these putative complexes may play in this acidophilic chemolithotrophic bacterium.
机译:酸性氧化硫杆菌铁氧体是一种嗜酸性的化学营养型细菌,可以在弱还原剂Fe(2+)或还原性硫化合物的存在下生长,该硫化合物比Fe(2+)提供更多的生长能量。在这里,我们首先回顾有关在铁生长的A. ferrooxidans中建立的上坡电子传输途径的最新发现,该发现已涉及到bc(1)复合物。然后,我们提供了证明,即使具有适当的底物,该bc(1)配合物也无法在正向起作用(运动反应)。在A.ferrooxidans ATCC 23270菌株的完整基因组序列中搜索A. ferrooxidans bc(1)复合物(菌株ATCC 19859)的三个氧化还原亚基的序列显示,存在两个不同的bc(1)复合物。 A.氧化亚铁。细胞色素b和Rieske蛋白序列的比较使我们能够指出这些蛋白在A.ferrooxidans中的某些序列特异性。最后,我们讨论了存在两种不同的“经典” bc(1)配合物的可能原因,并就这些推定的配合物在该嗜酸性的化学营养型细菌中可能发挥的作用提出了一些建议。

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