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Non-chaperone Proteins Can Inhibit Aggregation and Cytotoxicity of Alzheimer Amyloid β Peptide

机译:非伴侣蛋白可以抑制阿尔茨海默氏淀粉样β肽的聚集和细胞毒性。

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摘要

Many factors are known to influence the oligomerization, fibrillation, and amyloid formation of the Aβ peptide that is associated with Alzheimer disease. Other proteins that are present when Aβ peptides deposit in vivo are likely to have an effect on these aggregation processes. To separate specific versus broad spectrum effects of proteins on Aβ aggregation, we tested a series of proteins not reported to have chaperone activity: catalase, pyruvate kinase, albumin, lysozyme, α-lactalbumin, and β-lactoglobulin. All tested proteins suppressed the fibrillation of Alzheimer Aβ(1–40) peptide at substoichiometric ratios, albeit some more effectively than others. All proteins bound non-specifically to Aβ, stabilized its random coils, and reduced its cytotoxicity. Surprisingly, pyruvate kinase and catalase were at least as effective as known chaperones in inhibiting Aβ aggregation. We propose general mechanisms for the broad-spectrum inhibition Aβ fibrillation by proteins. The mechanisms we discuss are significant for prognostics and perhaps even for prevention and treatment of Alzheimer disease.
机译:已知许多因素会影响与阿尔茨海默氏病相关的Aβ肽的低聚,原纤维化和淀粉样蛋白形成。当Aβ肽在体内沉积时,存在的其他蛋白质可能会影响这些聚集过程。为了分离蛋白质对Aβ聚集的特定作用和广谱作用,我们测试了一系列未报告具有伴侣活性的蛋白质:过氧化氢酶,丙酮酸激酶,白蛋白,溶菌酶,α-乳清蛋白和β-乳球蛋白。所有测试的蛋白质均以亚化学计量比抑制了AlzheimerAβ(1–40)肽的原纤化,尽管某些蛋白比其他蛋白更有效。所有蛋白质都非特异性地与Aβ结合,稳定了其随机线圈,并降低了其细胞毒性。令人惊讶地,丙酮酸激酶和过氧化氢酶在抑制Aβ聚集方面至少与已知的伴侣蛋白一样有效。我们提出了由蛋白质抑制广谱Aβ纤颤的一般机制。我们讨论的机制对于预后甚至对预防和治疗阿尔茨海默氏病均具有重要意义。

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