β丝:增强和控制聚合。

Cedric Dicko, John M Kenney, Fritz Vollrath
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引用次数: 37

摘要

似乎形成纤维的蛋白质不是一个排他的群体,但在适当的条件下,许多蛋白质可以潜在地聚集并形成原纤维;虽然只有某些蛋白质,如淀粉样蛋白和蚕丝蛋白,在正常的生理条件下会这样做。即便如此,这表明了一种无处不在的聚集机制,其中蛋白质环境至少与序列一样重要。观察到强迫和自然聚集的理想模型系统是丝绸。丝绸已经进化到很容易形成具有广泛结构功能的不溶性有序结构。这种动物,无论是蚕还是蜘蛛,都会在复杂的环境中产生、储存和运输高分子量的蛋白质,最终形成具有各种机械性能的丝纤维。在这里,我们回顾了纤维的形成及其先决条件,并讨论了动物促进和调节丝组装以实现受控蛋白质聚集的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beta-silks: enhancing and controlling aggregation.

It appears that fiber-forming proteins are not an exclusive group but that, with appropriate conditions, many proteins can potentially aggregate and form fibrils; though only certain proteins, for example, amyloids and silks, do so under normal physiological conditions. Even so, this suggests a ubiquitous aggregation mechanism in which the protein environment is at least as important as the sequence. An ideal model system in which forced and natural aggregation has been observed is silk. Silks have evolved specifically to readily form insoluble ordered structures with a wide range of structural functionality. The animal, be it silkworm or spider, will produce, store, and transport high molecular weight proteins in a complex environment to eventually allow formation of silk fibers with a variety of mechanical properties. Here we review fiber formation and its prerequisites, and discuss the mechanism by which the animal facilitates and modulates silk assembly to achieve controlled protein aggregation.

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