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Methionine oxidized apolipoprotein A-I at the crossroads of HDL biogenesis and amyloid formation

机译:蛋氨酸氧化载脂蛋白A-I在HDL生物合成和淀粉样蛋白形成的十字路口

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摘要

Apolipoprotein A-I (apoA-I) shares with other exchangeable apolipoproteins a high level of structural plasticity. In the lipid-free state, the apolipoprotein amphipathic α-helices interact intra- and intermolecularly, providing structural stabilization by self-association. We have reported that lipid-free apoA-I becomes amyloidogenic upon physiologically relevant (myeloperoxidase-mediated) Met oxidation. In this study, we established that Met oxidation promotes amyloidogenesis by reducing the stability of apoA-I monomers and irreversibly disrupting self-association. The oxidized apoA-I monomers also exhibited increased cellular cholesterol release capacity and stronger association with macrophages, compared to nonoxidized apoA-I. Of physiologic relevance, preformed oxidized apoA-I amyloid fibrils induced amyloid formation in nonoxidized apoA-I. This process was enhanced when self-association of nonoxidized apoA-I was disrupted by thermal treatment. Solid state NMR analysis revealed that aggregates formed by seeded nonoxidized apoA-I were structurally similar to those formed by the oxidized protein, featuring a β-structure-rich amyloid fold alongside α-helices retained from the native state. In atherosclerotic lesions, the conditions that promote apoA-I amyloid formation are readily available: myeloperoxidase, active oxygen species, low pH, and high concentration of lipid-free apoA-I. Our results suggest that even partial Met oxidation of apoA-I can nucleate amyloidogenesis, thus sequestering and inactivating otherwise antiatherogenic and HDL-forming apoA-I.—Witkowski, A., Chan, G. K. L., Boatz, J. C., Li, N. J., Inoue, A. P., Wong, J. C., van der Wel, P. C. A., Cavigiolio, G. Methionine oxidized apolipoprotein A-I at the crossroads of HDL biogenesis and amyloid formation.
机译:载脂蛋白A-I(apoA-I)与其他可交换载脂蛋白共享高水平的结构可塑性。在无脂状态下,载脂蛋白两亲性α螺旋在分子内和分子间相互作用,通过自缔合提供结构稳定作用。我们已经报道,无脂质的apoA-I在生理相关的(髓过氧化物酶介导的)Met氧化作用下变成淀粉样蛋白。在这项研究中,我们确定了Met氧化可通过降低apoA-I单体的稳定性和不可逆地破坏自我缔合来促进淀粉样蛋白生成。与未氧化的载脂蛋白A-1相比,氧化的载脂蛋白A-1单体还表现出增加的细胞胆固醇释放能力和与巨噬细胞的缔合。具有生理相关性,预先形成的氧化的apoA-I淀粉样蛋白原纤维诱导了非氧化的apoA-I中的淀粉样蛋白形成。当未氧化的apoA-I的自缔合被热处理破坏时,该过程得到增强。固态NMR分析表明,由种子未氧化的apoA-I形成的聚集体在结构上与由氧化蛋白形成的聚集体相似,其特征是富含β结构的淀粉样蛋白折叠以及保留自天然状态的α-螺旋。在动脉粥样硬化病变中,促进apoA-1淀粉样蛋白形成的疾病很容易获得:髓过氧化物酶,活性氧,低pH值和高浓度的无脂质apoA-1。我们的结果表明,即使ApoA-I的部分Met氧化也可以使淀粉样蛋白形成核化,从而隔离和灭活原本具有抗动脉粥样硬化和HDL作用的apoA-I。—Witkowski,A.,Chan,GKL,Boatz,JC,Li,NJ,Inoue, AP,Wong,JC,van der Wel,PCA,Cavigiolio,G。蛋氨酸在HDL生物发生和淀粉样蛋白形成的十字路口氧化了载脂蛋白AI。

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