首页> 美国卫生研究院文献>PLoS Clinical Trials >Long-chain flavodoxin FldX1 improves Paraburkholderia xenovorans LB400 tolerance to oxidative stress caused by paraquat and H2O2
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Long-chain flavodoxin FldX1 improves Paraburkholderia xenovorans LB400 tolerance to oxidative stress caused by paraquat and H2O2

机译:长链黄素毒素FldX1改善异食巴拉伯球菌LB400对百草枯和H2O2引起的氧化应激的耐受性

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摘要

Flavodoxins are small electron transfer proteins containing flavin mononucleotide (FMN) as a prosthetic group, which play an important role during oxidative stress or iron limitation. The aims of this study were the identification and characterization of flavodoxins in the model aromatic-degrader Paraburkholderia xenovorans LB400 and the analyses of their protective effects during oxidative stress induced by paraquat and H2O2. Two genes (BxeA0278 and BxeB0391) encoding flavodoxins (hereafter referred to as fldX for flavodoxin from P. xenovorans), were identified at the LB400 major and minor chromosome. Genomic context of the flavodoxin-encoding genes showed genes encoding membrane proteins, transporters, and proteins involved in redox processes and biosynthesis of macromolecules. A secondary structure prediction of both LB400 flavodoxins showed the characteristic flavodoxin structure of five ß-sheets intercalated with five α-helices. FldX1 contains a loop intercalated in the fifth β-strand, which indicates that it belongs to the long-chain flavodoxins, whereas FldX2 is a short-chain flavodoxin. A phylogenetic analysis of 73 flavodoxins from 43 bacterial genera revealed eight clusters (I-VIII), while FldX1 and FldX2 grouped separately within a long-chain and a short-chain flavodoxin clades. FldX1 and FldX2 were overexpressed in P. xenovorans. Interestingly, the strain overexpressing the long-chain flavodoxin FldX1 (p2-fldX1) showed a faster growth in glucose than the control strain. The recombinant strain overexpressing the long-chain flavodoxin FldX1 (p2-fldx1) exposed to paraquat (20 mM) possessed lower susceptibility to growth inhibition on plates and higher survival in liquid medium than the control strain. The strains overexpressing the flavodoxins FldX1 and FldX2 showed higher survival during exposure to 1 mM paraquat (>95%) than the control strain (68%). Compared to the control strain, strains overexpressing FldX1 and FldX2 showed lower lipid peroxidation (>20%) after exposure to 1 mM paraquat and a lower protein carbonylation (~30%) after exposure to 1 mM H2O2 was observed. During exposure to paraquat, strain p2-fldx1 downregulated the katG4, hpf, trxB1 and ohr genes (> 2-fold), whereas strain p2-fldx2 upregulated the oxyR and ahpC1 genes (> 2-fold). In conclusion, the flavodoxins FldX1 and FldX2 of P. xenovorans LB400 conferred protection to cells exposed to the oxidizing agents paraquat and H2O2.
机译:黄素毒素是含有黄素单核苷酸(FMN)作为辅基的小电子转移蛋白,在氧化应激或铁限制中起重要作用。这项研究的目的是鉴定和表征模型芳香降解剂Paraburkholderia xenovorans LB400中的黄酮毒素,并分析其在百草枯和H2O2引起的氧化应激中的保护作用。鉴定了两个编码黄酮毒素的基因(BxeA0278和BxeB0391)(以下称为P. x enovorans中的 fl avo d oxin的fldX)。在LB400主要和次要染色体上黄素毒素编码基因的基因组背景表明,编码膜蛋白,转运蛋白和参与氧化还原过程和大分子生物合成的蛋白的基因。两种LB400黄酮毒素的二级结构预测均显示了五个β-折叠与五个α-螺旋插入的特征性黄酮毒素结构。 FldX1包含插入第五条β链的环,这表明它属于长链黄素类毒素,而FldX2是短链黄素类毒素。对来自43个细菌属的73种黄酮毒素的系统发育分析揭示了8个簇(I-VIII),而FldX1和FldX2分别在长链和短链黄酮毒素进化枝中分组。 FldX1和FldX2在异种疟原虫中过表达。有趣的是,过表达长链黄素毒素FldX1(p2-fldX1)的菌株比对照菌株显示出更快的葡萄糖生长。与对照菌株相比,过量表达百草枯(20 mM)的长链黄素类毒素FldX1(p2-fldx1)的重组菌株在平板上的生长抑制敏感性更低,在液体培养基中的存活率更高。过表达黄素毒素FldX1和FldX2的菌株在暴露于1 mM百草枯期间(> 95%)显示出比对照菌株(68%)更高的存活率。与对照菌株相比,过表达FldX1和FldX2的菌株在暴露于1 mM百草枯后显示较低的脂质过氧化作用(> 20%),并且在暴露于1 mM H2O2后观察到较低的蛋白质羰基化作用(〜30%)。在接触百草枯期间,菌株p2-fldx1下调了katG4,hpf,trxB1和ohr基因(> 2倍),而菌株p2-fldx2上调了 oxyR ahpC1 基因(> 2倍)。总之, P 的黄素毒素FldX1和FldX2。 xenovorans LB400对暴露于百草枯和H2O2氧化剂的细胞具有保护作用。

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