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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Disclosure of a fundamental clue for the elucidation of the myricetin mechanism of action as amyloid aggregation inhibitor by mass spectrometry
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Disclosure of a fundamental clue for the elucidation of the myricetin mechanism of action as amyloid aggregation inhibitor by mass spectrometry

机译:揭示了通过质谱阐明杨梅素作为淀粉样蛋白聚集抑制剂的作用机理的基本线索

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摘要

Progression of Alzheimer's disease involves aggregation of amyloid-beta (Aβ) peptides, a complex process that involves the formation of several soluble intermediates and ends up with the deposition of ordered fibrillar architectures. The determination of the Aβ42 self-assembly species targeted by an inhibitor is a key step in the identification of new inhibitors endowed with a suitable profile. In this context, the subtle characterization of myricetin (Myr) mode of action at a molecular level was performed by using different MS techniques, which allowed the monitoring of the modifications induced by Myr on the first occurring Aβ42 self-assembly species. Results showed a persistent level of monomer and decreased formation of ordered Aβ42 aggregates in the presence of Myr, further, nano-LC-nano-ESI-QTOF, MALDI-TOF, and ESI-IT highlighted the formation of a new oxidized Aβ42 species, which is less prone to aggregation, in the presence of Myr. Coupling tryptic digestion and nano-LC-nano-ESI-QTOF also allowed the identification of Met35 as the specific site of oxidation along the Aβ aminoacid chain. Therefore, the detailed investigation by different MS techniques allowed better understanding of the molecular modification at the basis of the antiaggregating properties of Myr and highlighted its oxidizing action on the residue Met35 in Aβ monomers.
机译:阿尔茨海默氏病的进展涉及淀粉样β(Aβ)肽的聚集,这是一个复杂的过程,涉及几种可溶性中间体的形成,并最终沉积有序的原纤维结构。确定抑制剂靶向的Aβ42自组装物质是鉴定具有合适特性的新抑制剂的关键步骤。在这种情况下,通过使用不同的质谱技术在分子水平上对杨梅素(Myr)作用方式进行了微妙的表征,从而可以监测由Myr诱导的第一个Aβ42自组装物种的修饰。结果显示,在Myr的存在下,单体的持久水平和有序Aβ42聚集体的形成减少,此外,纳米LC-纳米ESI-QTOF,MALDI-TOF和ESI-IT强调了新的氧化Aβ42物种的形成,在Myr的存在下,它不易聚集。胰蛋白酶消化和纳米LC-nano-ESI-QTOF的耦合还可以将Met35鉴定为沿Aβ氨基酸链氧化的特异性位点。因此,通过不同的质谱技术进行的详细研究可以更好地了解基于Myr的抗聚集特性的分子修饰,并强调了其对Aβ单体中Met35残基的氧化作用。

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