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Self-Assembly of Ovalbumin into Amyloid and Non-Amyloid Fibrils

机译:卵清蛋白自组装成淀粉样蛋白和非淀粉样蛋白原纤维

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摘要

We study the fibrillation pathway of ovalbumin protein and report the simultaneous formation of several types of fibrils, with clear structural and physical differences. We compare the fibrillation mechanisms at low pH with and without salt, and follow the kinetics of fibrils growth by atomic force microscopy (AFM), static and dynamic light scattering (SLS, DLS), and small-angle X-ray scattering (SAXS). We show that, among the morphologies identified, long semiflexible amyloid fibrils (type I), with persistence length L ~ 3 μm, Young's modulus E ~ 2.8 GPa, and cross-β structure are formed. We also observe much more flexible fibrils (type III, L_p ~ 63 nm), that can assemble into multistranded ribbons with time. They show significantly lower intrinsic stiffness (1.1 GPa) and a secondary structure, which is not characteristic of the well-ordered amyloids, as determined by circular dichroism (CD), wide-angle X-ray scattering (WAXS), and attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR). In between these two main classes of fibrils, a third family, with intermediate flexibility (type II, L_p ~ 300 nm), is also resolved.
机译:我们研究卵清蛋白蛋白的原纤化途径,并报告几种类型的原纤维同时形成,具有明显的结构和物理差异。我们比较了有盐和无盐在低pH下的原纤化机理,并通过原子力显微镜(AFM),静态和动态光散射(SLS,DLS)和小角度X射线散射(SAXS)跟踪了原纤维生长的动力学。 。我们表明,在确定的形态中,形成了长半柔性淀粉样蛋白原纤维(I型),其持久长度为L〜3μm,杨氏模量E〜2.8 GPa,并且具有交叉β结构。我们还观察到柔软得多的原纤维(III型,L_p〜63 nm),随着时间的流逝,它们可以组装成多股带。它们显示出显着较低的固有刚度(1.1 GPa)和二级结构,这不是规则的淀粉状蛋白的特征,这是通过圆二色性(CD),广角X射线散射(WAXS)和衰减的总反射率确定的傅立叶变换红外光谱(ATR-FTIR)。在这两种主要的原纤维之间,还解决了具有中等柔韧性(II型,L_p〜300 nm)的第三族。

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