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首页> 外文期刊>Biochemical and Biophysical Research Communications >The roles of two O-donor ligands in the Fe2+-binding and H2O2-sensing by the Fe2+-dependent H2O2 sensor PerR
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The roles of two O-donor ligands in the Fe2+-binding and H2O2-sensing by the Fe2+-dependent H2O2 sensor PerR

机译:两种O-供体配体在Fe2 + - 桥接和H2O2感测的统一通过Fe2 +依赖性H2O2传感器珀尔

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PerR is a metal-dependent peroxide sensing transcription factor which controls the expression of genes involved in peroxide resistance. The function of Bacillus subtilis PerR is mainly dictated by the regulatory metal ion (Fe2+ or Mn2+) coordinated by three N-donor ligands (His37, His91, and His93) and two 0 donor ligands (Asp85 and Asp104). While H2O2 sensing by PerR is mediated by Fe2+-dependent oxidation of N-donor ligand (either His37 or His91), one of the O-donor ligands (Asp104), but not Asp85, has been proposed as the key residue that regulates the sensitivity of PerR to H2O2. Here we systematically investigated the relative roles of two O-donor ligands of PerR in metal-binding affinity and H2O2 sensitivity in vivo and in vitro. Consistent with the previous report, in vitro the D104E-PerR could not sense low levels of H2O2 in the presence of excess Fe2+ sufficient for the formation of the Fe2+-bound D104E-PerR. However, the expression of PerR-regulated reporter fusion was not repressed by D104E-PerR in the presence of Fe2+, suggesting that Fe2+ is not an effective corepressor for this mutant protein in vivo. Furthermore, in vitro metal titration assays indicate that D104E-PerR has a significantly reduced affinity for Fe2+, but not for Mn2+, when compared to wild type PerR. These data indicate that the type of O-donor ligand (Asp vs. Glu) at position 104 is an important determinant in providing high Fe2+-binding affinity required for the sensing of the physiologically relevant Fe2+-levels, in addition to its role in rendering PerR highly sensitive to physiological levels of H2O2. In comparison, the D85E-PerR did not show a perturbed change in Fe2+-binding affinity, however, it displayed a slightly decreased sensitivity to H2O2 both in vivo and in vitro, suggesting that the type of O-donor ligand (Asp vs. Glu) at position 85 may be important for the fine-tuning of H2O2 sensitivity. (C) 2018 Elsevier Inc. All rights reserved.
机译:perr是一种金属依赖的过氧化物传感转录因子,其控制参与过氧化物抗性的基因的表达。枯草芽孢杆菌Perr的功能主要由由三个N-供体配体(HIS37,HIS91和HIS93)和两个0供体配体(ASP85和ASP104)配位的调节金属离子(Fe2 +或Mn2 +)决定。虽然Perr的H 2 O 2感测由Fe2 + - 依赖性氧化N-供体配体(HIS37或HIS91)介导,但是已经提出了O-供体配体(ASP104),但不是ASP85,作为调节灵敏度的关键残留物perr到h2O2。在这里,我们系统地研究了Perr两种O-供体配体在体内和体外H2O2敏感性中的两种O-供体配体的相对作用。与先前的报告一致,在体外,D104E-PERR在存在过量Fe2 +的情况下不能感测低水平的H 2 O 2,足以形成Fe2 + -Bound D104E-perr。然而,在Fe2 +存在下,D104E-Perr未抑制Perr调节报告融合的表达,表明Fe2 +不是该突变蛋白在体内的有效内容压力。此外,在体外金属滴定测定中表明,与野生型Perr相比,D104E-Perr对Fe2 +的亲和力显着降低,但不适用于MN2 +。这些数据表明,位置104的O-供体配体(ASP与Glu)的类型是提供了在渲染中的作用外,提供了感测生理相关Fe2 + -Levels所需的高Fe2 +粘接亲和力的重要决定因素perr对H2O2的生理水平非常敏感。相比之下,D85E-PERR未显示FE2 + - 粘接亲和力的扰动变化,然而,它表现出对体内和体外H2O2的敏感性略微降低,这表明O-供体配体的类型(ASP与Glu )在第85位,对于H2O2灵敏度的微调可能是重要的。 (c)2018年Elsevier Inc.保留所有权利。

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