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Structure-based prediction reveals capping motifs that inhibit β-helix aggregation

机译:基于结构的预测显示抑制β-螺旋聚集的加帽基序

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摘要

The parallel β-helix is a geometrically regular fold commonly found in the proteomes of bacteria, viruses, fungi, archaea, and some vertebrates. β-helix structure has been observed in monomeric units of some aggregated amyloid fibers. In contrast, soluble β-helices, both right- and left-handed, are usually “capped” on each end by one or more secondary structures. Here, an in-depth classification of the diverse range of β-helix cap structures reveals subtle commonalities in structural components and in interactions with the β-helix core. Based on these uncovered commonalities, a toolkit of automated predictors was developed for the two distinct types of cap structures. In vitro deletion of the toolkit-predicted C-terminal cap from the pertactin β-helix resulted in increased aggregation and the formation of soluble oligomeric species. These results suggest that β-helix cap motifs can prevent specific, β-sheet-mediated oligomeric interactions, similar to those observed in amyloid formation.
机译:平行的β-螺旋是几何规则的折叠,通常在细菌,病毒,真菌,古细菌和某些脊椎动物的蛋白质组中发现。在一些聚集的淀粉状蛋白纤维的单体单元中已经观察到β-螺旋结构。相反,右手和左手的可溶性β螺旋通常在一个末端被一个或多个二级结构“封闭”。在这里,对β-螺旋帽结构的各种范围的深入分类揭示了结构成分以及与β-螺旋核心相互作用的细微共性。基于这些发现的共性,针对两种不同类型的瓶盖结构开发了一套自动预测器工具包。从pertactinβ-螺旋中体外删除工具包预测的C端帽会导致聚集增加,并形成可溶性寡聚体。这些结果表明,β-螺旋帽基序可以阻止特异性的β-折叠介导的寡聚相互作用,与淀粉样蛋白形成中观察到的相似。

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