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Binding of the Molecular Chaperone αB-Crystallin to Aβ Amyloid Fibrils Inhibits Fibril Elongation

机译:分子伴侣αB-晶体蛋白与Aβ淀粉样蛋白原纤维的结合抑制原纤维伸长。

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摘要

The molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in response to a multitude of stress stimuli, and is found colocalized with Aβ amyloid fibrils in the extracellular plaques that are characteristic of Alzheimer's disease. We investigated whether this archetypical small heat-shock protein has the ability to interact with Aβ fibrils in vitro. We find that αB-crystallin binds to wild-type Aβ42 fibrils with micromolar affinity, and also binds to fibrils formed from the E22G Arctic mutation of Aβ42. Immunoelectron microscopy confirms that binding occurs along the entire length and ends of the fibrils. Investigations into the effect of αB-crystallin on the seeded growth of Aβ fibrils, both in solution and on the surface of a quartz crystal microbalance biosensor, reveal that the binding of αB-crystallin to seed fibrils strongly inhibits their elongation. Because the lag phase in sigmoidal fibril assembly kinetics is dominated by elongation and fragmentation rates, the chaperone mechanism identified here represents a highly effective means to inhibit fibril proliferation. Together with previous observations of αB-crystallin interaction with α-synuclein and insulin fibrils, the results suggest that this mechanism is a generic means of providing molecular chaperone protection against amyloid fibril formation.
机译:分子伴侣αB-晶状体蛋白是一种小的热休克蛋白,可响应多种应激刺激而被上调,并发现与阿尔茨海默氏病特征性的细胞外斑块中的Aβ淀粉样蛋白纤维共定位。我们研究了这种典型的小热休克蛋白是否具有体外与Aβ原纤维相互作用的能力。我们发现,αB-晶状体蛋白以微摩尔亲和力与野生型Aβ42原纤维结合,也与由Aβ42的E22G北极突变形成的原纤维结合。免疫电子显微镜证实结合发生在原纤维的整个长度和末端。在溶液中和石英晶体微天平生物传感器表面上,αB-晶状蛋白对Aβ纤丝的种子生长的影响的研究表明,αB-晶状蛋白与种子纤丝的结合强烈抑制了它们的伸长。由于乙状结肠原纤维装配动力学的滞后阶段主要由伸长率和断裂速率决定,因此此处确定的分子伴侣机理代表了抑制原纤维增殖的高效手段。连同先前观察到的αB-晶状蛋白与α-突触核蛋白和胰岛素原纤维的相互作用,结果表明该机制是提供分子伴侣保护以防止淀粉样原纤维形成的通用手段。

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