Department of Biochemical Sciences, "Sapienza" University of Rome, 00185 Rome, Italy.
Departament of Organic Chemistry, Instituto Universitario de Bio-Orgánica "Antonio González", University of La Laguna, La Laguna, 38296 Tenerife, Spain.
Molecules. 2020 Feb 20;25(4):961. doi: 10.3390/molecules25040961.
The β-amyloid (Aβ) peptide plays a key role in the pathogenesis of Alzheimer's disease. The methionine (Met) residue at position 35 in Aβ C-terminal domain is critical for neurotoxicity, aggregation, and free radical formation initiated by the peptide. The role of Met in modulating toxicological properties of Aβ most likely involves an oxidative event at the sulfur atom. We therefore investigated the one- or two-electron oxidation of the Met residue of Aβ fragment and the effect of such oxidation on the behavior of the peptide. Bicarbonate promotes two-electron oxidations mediated by hydrogen peroxide after generation of peroxymonocarbonate (HCO, PMC). The bicarbonate/carbon dioxide pair stimulates one-electron oxidations mediated by carbonate radical anion (CO). PMC efficiently oxidizes thioether sulfur of the Met residue to sulfoxide. Interestingly, such oxidation hampers the tendency of Aβ to aggregate. Conversely, CO causes the one-electron oxidation of methionine residue to sulfur radical cation (MetS). The formation of this transient reactive intermediate during Aβ oxidation may play an important role in the process underlying amyloid neurotoxicity and free radical generation.
β-淀粉样蛋白(Aβ)肽在阿尔茨海默病的发病机制中起关键作用。Aβ C 端结构域中蛋氨酸(Met)残基在肽引发的神经毒性、聚集和自由基形成中起关键作用。Met 残基在调节 Aβ 的毒理学特性方面的作用可能涉及硫原子的氧化事件。因此,我们研究了 Aβ 片段的 Met 残基的单电子或双电子氧化以及这种氧化对肽行为的影响。碳酸氢盐促进过氧化氢介导的二电子氧化,生成过氧单碳酸根(HCO,PMC)后。碳酸氢盐/二氧化碳对碳酸根自由基阴离子(CO)介导的单电子氧化有刺激作用。PMC 可有效地将 Met 残基的硫醚硫氧化为亚砜。有趣的是,这种氧化会阻碍 Aβ 聚集的趋势。相反,CO 导致蛋氨酸残基的单电子氧化生成亚硫自由基阳离子(MetS)。在 Aβ 氧化过程中形成的这种瞬态反应性中间产物可能在淀粉样神经毒性和自由基生成的过程中起重要作用。