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αB-crystallin, a small heat-shock protein, prevents the amyloid fibril growth of an amyloid β-peptide and β2-microglobulin

机译:αB-crystallin是一种小分子热休克蛋白,可阻止淀粉样蛋白β肽和β2-微球蛋白的淀粉样蛋白原纤维生长

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摘要

αB-crystallin, a small heat-shock protein, exhibits molecular chaperone activity. We have studied the effect of αB-crystallin on the fibril growth of the Aβ (amyloid β)-peptides Aβ-(1–40) and Aβ-(1–42). αB-crystallin, but not BSA or hen egg-white lysozyme, prevented the fibril growth of Aβ-(1–40), as revealed by thioflavin T binding, total internal reflection fluorescence microscopy and CD spectroscopy. Comparison of the activity of some mutants and chimaeric α-crystallins in preventing Aβ-(1–40) fibril growth with their previously reported chaperone ability in preventing dithiothreitol-induced aggregation of insulin suggests that there might be both common and distinct sites of interaction on α-crystallin involved in the prevention of amorphous aggregation of insulin and fibril growth of Aβ-(1–40). αB-crystallin also prevents the spontaneous fibril formation (without externally added seeds) of Aβ-(1–42), as well as the fibril growth of Aβ-(1–40) when seeded with the Aβ-(1–42) fibril seed. Sedimentation velocity measurements show that αB-crystallin does not form a stable complex with Aβ-(1–40). The mechanism by which it prevents the fibril growth differs from the known mechanism by which it prevents the amorphous aggregation of proteins. αB-crystallin binds to the amyloid fibrils of Aβ-(1–40), indicating that the preferential interaction of the chaperone with the fibril nucleus, which inhibits nucleation-dependent polymerization of amyloid fibrils, is the mechanism that is predominantly involved. We found that αB-crystallin prevents the fibril growth of β2-microglobulin under acidic conditions. It also retards the depolymerization of β2-microglobulin fibrils, indicating that it can interact with the fibrils. Our study sheds light on the role of small heat-shock proteins in protein conformational diseases, particularly in Alzheimer's disease.
机译:αB-crystallin是一种小分子热激蛋白,具有分子伴侣活性。我们已经研究了αB-晶状蛋白对Aβ(淀粉样β)肽Aβ-(1-40)和Aβ-(1-42)的原纤维生长的影响。如硫代黄素T结合,全内反射荧光显微镜和CD光谱所揭示的,αB-晶状体蛋白可阻止Aβ-(1-4)的原纤维生长,但不能抑制BSA或鸡蛋清溶菌酶。比较一些突变体和嵌合α-晶状体蛋白在预防Aβ-(1–40)原纤维生长方面的活性与其先前报道的分子伴侣在预防二硫苏糖醇诱导的胰岛素聚集中的能力的比较表明,可能存在共同和不同的相互作用位点α-晶状体蛋白参与预防胰岛素的无定形聚集和Aβ-(1-40)的原纤维生长。 αB-晶状蛋白还可以防止Aβ-(1-42)的自发原纤维形成(无外部添加的种子),以及接种Aβ-(1-42)的原纤维时Aβ-(1-440)的原纤维生长。种子。沉积速度测量结果表明,αB-晶状蛋白不能与Aβ-(1-40)形成稳定的络合物。防止原纤维生长的机制不同于已知的防止蛋白质无定形聚集的机制。 αB-晶状蛋白与Aβ-(1-4)的淀粉样蛋白原纤维结合,表明伴侣分子与原纤维核的优先相互作用是抑制淀粉样蛋白原核成核依赖性聚合反应的主要机制。我们发现αB-晶状体蛋白在酸性条件下阻止了β2-微球蛋白的原纤维生长。它还阻碍了β2-微球蛋白原纤维的解聚,表明它可以与原纤维相互作用。我们的研究揭示了小热激蛋白在蛋白质构象疾病中的作用,特别是在阿尔茨海默氏病中。

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