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羟胺诱导亚铁硝酰基结合蛋白的氧化。

Hydroxylamine-induced oxidation of ferrous nitrobindins.

机构信息

Department of Sciences, Roma Tre University, 00146, Rome, Italy.

Department of Clinical Sciences and Translational Medicine, University of Roma "Tor Vergata", 00133, Rome, Italy.

出版信息

J Biol Inorg Chem. 2022 Aug;27(4-5):443-453. doi: 10.1007/s00775-022-01940-9. Epub 2022 May 11.

Abstract

Hemoglobin and myoglobin are generally taken as molecular models of all-α-helical heme-proteins. On the other hand, nitrophorins and nitrobindins (Nb), which are arranged in 8 and 10 β-strands, respectively, represent the molecular models of all-β-barrel heme-proteins. Here, kinetics of the hydroxylamine- (HA-) mediated oxidation of ferrous Mycobacterium tuberculosis, Arabidopsis thaliana, and Homo sapiens nitrobindins (Mt-Nb(II), At-Nb(II), and Hs-Nb(II), respectively), at pH 7.0 and 20.0 °C, are reported. Of note, HA displays antibacterial properties and is a good candidate for the treatment and/or prevention of reactive nitrogen species- (RNS-) linked aging-related pathologies, such as macular degeneration. Under anaerobic conditions, mixing the Mt-Nb(II), At-Nb(II), and Hs-Nb(II) solutions with the HA solutions brings about absorbance spectral changes reflecting the formation of the ferric derivative (i.e., Mt-Nb(III), At-Nb(III), and Hs-Nb(III), respectively). Values of the second order rate constant for the HA-mediated oxidation of Mt-Nb(II), At-Nb(II), and Hs-Nb(II) are 1.1 × 10 M s, 6.5 × 10 M s, and 2.2 × 10 M s, respectively. Moreover, the HA:Nb(II) stoichiometry is 1:2 as reported for ferrous deoxygenated and carbonylated all-α-helical heme-proteins. A comparative look of the HA reduction kinetics by several ferrous heme-proteins suggests that an important role might be played by residues (such as His or Tyr) in the proximity of the heme-Fe atom either coordinating it or not. In this respect, Nbs seem to exploit somewhat different structural aspects, indicating that redox mechanisms for the heme-Fe(II)-to-heme-Fe(III) conversion might differ between all-α-helical and all-β-barrel heme-proteins.

摘要

血红蛋白和肌红蛋白通常被用作所有α-螺旋血红素蛋白的分子模型。另一方面,硝化蛋白和硝基结合蛋白(Nb)分别由 8 个和 10 个β-折叠组成,代表所有β-桶血红素蛋白的分子模型。在这里,报道了在 pH 7.0 和 20.0°C 下,羟胺(HA)介导的亚铁结核分枝杆菌、拟南芥和人类硝基结合蛋白(Mt-Nb(II)、At-Nb(II)和 Hs-Nb(II))氧化的动力学,分别)。值得注意的是,HA 具有抗菌特性,是治疗和/或预防与活性氮物种(RNS)相关的衰老相关病理学的良好候选物,例如黄斑变性。在厌氧条件下,将 Mt-Nb(II)、At-Nb(II)和 Hs-Nb(II)溶液与 HA 溶液混合会引起吸收光谱变化,反映出形成铁衍生物(即 Mt-Nb(III)、At-Nb(III)和 Hs-Nb(III))。HA 介导的 Mt-Nb(II)、At-Nb(II)和 Hs-Nb(II)氧化的二级反应速率常数分别为 1.1×10^M^s、6.5×10^M^s 和 2.2×10^M^s。此外,如报道的那样,对于去氧和碳化的所有α-螺旋血红素蛋白,HA:Nb(II)的化学计量比为 1:2。对几种亚铁血红素蛋白的 HA 还原动力学的比较表明,位于血红素-Fe 原子附近的残基(如 His 或 Tyr)可能通过配位或不配位对其发挥重要作用。在这方面,Nb 似乎利用了略有不同的结构方面,表明血红素-Fe(II)-血红素-Fe(III)转化的氧化还原机制可能在所有α-螺旋和所有β-桶血红素蛋白之间有所不同。

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