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首页> 外文期刊>Journal of Molecular Biology >High pressure promotes circularly shaped insulin amyloid.
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High pressure promotes circularly shaped insulin amyloid.

机译:高压促进圆形胰岛素淀粉样蛋白。

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摘要

Amyloids, initially associated with certain degenerative diseases, and recently with the prions and prion-based inheritance in yeasts, are linearly-ordered beta-sheet-rich protein aggregates, presently thought to represent a rather common generic trait of proteins as polymers. Regardless of genetic origins and properties of precursor protein molecules, amyloids share many physicochemical properties, including the linear fibrillar morphology. Here, we show that under high hydrostatic pressure insulin forms amyloids of a unique circular morphology. Despite a degree of size-distribution, the smallest forms of the approximate radius of 340-420 nm are most abundant among the ring-shaped structures. The circular amyloid is accompanied by bent 20-100 nm long fibrils. The pressure-enhancement of a ring-like supramolecular fold suggests an anisotropic distribution of void volumes in regular amyloid fibres. While the ability of high pressure to evoke such drastic perturbations on an amyloidogenic pathway may help tune conformation of amyloid templates (e.g. inducing the PrP(Sc)-type infectivity in amyloids grown in vitro from recombinant PrP), the very finding raises new questions concerning possible consequences for high-pressure food processing.
机译:淀粉样蛋白最初与某些退行性疾病有关,而最近与酵母中的病毒和基于ion病毒的遗传有关,是线性排列的富含β-折叠的蛋白质聚集体,目前被认为代表了蛋白质作为聚合物的相当普遍的通用特性。不管遗传起源和前体蛋白分子的特性如何,淀粉样蛋白都具有许多物理化学特性,包括线性原纤维形态。在这里,我们表明,在高静水压力下,胰岛素形成了独特的环状形态的淀粉样蛋白。尽管有一定程度的尺寸分布,但是在环形结构中,大约半径为340-420 nm的最小形式最为丰富。环状淀粉样蛋白伴有弯曲的20-100 nm长的原纤维。环状超分子褶皱的压力增强表明规则淀粉样蛋白纤维中空隙体积呈各向异性分布。高压在淀粉样蛋白生成途径上引起剧烈扰动的能力可能有助于调节淀粉样蛋白模板的构象(例如,诱导重组PrP体外培养的淀粉样蛋白产生PrP(Sc)型感染性),这一发现提出了新的问题高压食品加工的可能后果。

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