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首页> 外文期刊>Biochemistry >The Characterization of Different Flavodoxin Reductase-Flavodoxin (FNR-Fld) Interactions Reveals an Efficient FNR-Fld Redox Pair and Identifies a Novel FNR Subclass
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The Characterization of Different Flavodoxin Reductase-Flavodoxin (FNR-Fld) Interactions Reveals an Efficient FNR-Fld Redox Pair and Identifies a Novel FNR Subclass

机译:不同黄酮氧素还原酶 - 黄酮(FNR-FLD)相互作用的表征揭示了一种有效的FNR-FLD氧化还原对并识别新型FNR子类

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摘要

Flavodoxins (Flds) are small, bacterial proteins that transfer electrons to various redox enzymes. Flavodoxins are reduced by ferredoxin/flavodoxin NAIDP(+) oxidoreductases (FNRs), but little is known of the FNR-Fld interaction. Here, we compare the interactions of two flavodoxins (Fld1-2), one flavodoxin-like protein (NrdI), and three different thioredoxin reductase (TrxR)-like FNRs (FNR1-3), all from Bacillus cereus. Steady-state kinetics shows that the FNR2-Fld2 electron transfer pair is particularly efficient, and redox potential measure also indicate that this is the most favorable electron donor/acceptor pair. Furthermore, crystal structures of FNR1 and FNR2 show that the proteins have crystallized in different conformations, a closed and an open conformation, respectively. We suggest that a large-scale conformational rearrangement takes place during the FNR catalytic cycle to allow for the binding and reduction of the Fld and, subsequently, the re-reduction of the FNR by NADPH. Finally, inspection of the residues surrounding the FAD cofactor in the FNR active site shows that a key isoalloxazine ring-stacking residue is different in FNR1 and FNR2, which could explain the large difference in catalytic efficiency between the two FNRs. To date, all of the characterized TrxR-like FNRs have a residue with aromatic character stacking against the FAD isoalloxazine ring, and this has been thought to be a conserved feature of this class of FNRs. FNR1, however, has a valine in this position. Bioinformatic analysis shows that the TrxR-like FNRs can actually be divided into two groups, one group where the FAD-stacking residue has aromatic character and another group where it is valine.
机译:黄酮毒素(FLDS)是小的细菌蛋白,其传递电子对各种氧化还原酶。通过Ferriedoxin /黄酮蛋白诺普(+)氧化还原酶(FNRS)减少了黄酮氧锌素,但是众所周知的FNR-FLD相互作用。在这里,我们比较两种黄酮毒素(FLAV1-2),一种黄酮毒素样蛋白(NRDI)和三种不同硫代昔林还原酶(TRXR) - 样FNR(FNR1-3)的相互作用,来自芽孢杆菌。稳态动力学表明,FNR2-FLD2电子转移对特别有效,氧化还原潜在措施还表明这是最有利的电子供体/受体对。此外,FNR1和FNR2的晶体结构表明,蛋白质分别在不同的构象中结晶,闭合和开放构象。我们建议在FNR催化循环期间进行大规模构象重排,以允许FLD的结合和减少,然后通过NADPH重新减少FNR。最后,在FNR活性部位中的FAD辅因子周围的残留物检测键入的键样品环堆叠残留物在FNR1和FNR2中不同,这可以解释两个FNR之间的催化效率的巨大差异。迄今为止,所有特征的TRXR样FNRS都有一个残留物,其具有富含FAD Isoalloxazine环的芳香性质,这被认为是这类FNRS的保守特征。然而,FNR1在这个位置有缬氨酸。生物信息分析表明,TRXR样FNRS实际上可以分为两组,其中FAD堆叠残留物具有芳族特征和另一个缬氨酸的群体。

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  • 来源
    《Biochemistry》 |2018年第37期|共10页
  • 作者单位

    Univ Oslo Sect Biochem &

    Mol Biol Dept Biosci N-0316 Oslo Norway;

    Univ Oslo Sect Biochem &

    Mol Biol Dept Biosci N-0316 Oslo Norway;

    Univ Oslo Sect Biochem &

    Mol Biol Dept Biosci N-0316 Oslo Norway;

    Univ Oslo Sect Biochem &

    Mol Biol Dept Biosci N-0316 Oslo Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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