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Amyloid-like fibrils of ribonuclease A with three-dimensional domain-swapped and native-like structure

机译:具有三维域交换和天然结构的核糖核酸酶A的淀粉样样原纤维

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摘要

Amyloid or amyloid-like fibrils are elongated, insoluble protein aggregates, formed in vivo(1) in association with neurodegenerative diseases or in vitro(2) from soluble native proteins, respectively. The underlying structure of the fibrillar or 'cross-beta' state has presented long-standing, fundamental puzzles of protein structure. These include whether fibril-forming proteins have two structurally distinct stable states, native and fibrillar, and whether all or only part of the native protein refolds as it converts to the fibrillar state. Here we show that a designed amyloid-like fibril of the well-characterized enzyme RNase A contains native-like molecules capable of enzymatic activity. In addition, these functional molecular units are formed from a core RNase A domain and a swapped complementary domain. These findings are consistent with the zipper-spine model(3) in which a cross-beta spine is decorated with three-dimensional domain-swapped functional units, retaining native-like structure.
机译:淀粉样蛋白或淀粉样蛋白样原纤维是细长的,不可溶的蛋白质聚集体,分别在体内(1)与神经退行性疾病相关联或在体外(2)由可溶性天然蛋白形成。纤维状或“交叉-β”状态的潜在结构已经存在了长期的蛋白质结构难题。这些因素包括原纤维形成蛋白是否具有两个结构上不同的稳定状态,即天然和原纤维,以及全部或仅部分天然蛋白在转变为原纤维状态时会发生重折叠。在这里,我们显示出一个设计良好的酶RNase A的淀粉样样原纤维包含能够进行酶活性的天然样分子。另外,这些功能性分子单元由核心RNase A结构域和交换的互补结构域形成。这些发现与拉链-脊柱模型(3)一致,在该模型中,跨beta脊柱装饰有三维域交换功能单元,并保留了天然结构。

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