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Domain swapping and amyloid fibril conformation

机译:域交换和淀粉样蛋白原纤维构象

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摘要

For several different proteins an apparent correlation has been observed between the propensity for dimerization by domain-swapping and the ability to aggregate into amyloid-like fibrils. Examples include the disease-related proteins beta2-microglobulin and transthyretin. This has led to proposals that the amyloid-formation pathway may feature extensive domain swapping. One possible consequence of such an aggregation pathway is that the resulting fibrils would incorporate structural elements that resemble the domain-swapped forms of the protein and, thus, reflect certain native-like structures or domain-interactions. In magic angle spinning solid-state NMR-based and other structural studies of such amyloid fibrils, it appears that many of these proteins form fibrils that are not native-like. Several fibrils instead have an in-register, parallel conformation, which is a common amyloid structural motif and is seen, for instance, in various prion fibrils. Such a lack of native structure in the fibrils suggests that the apparent connection between domain-swapping ability and amyloid-formation may be more subtle or complex than may be presumed at first glance.
机译:对于几种不同的蛋白质,已经观察到通过结构域交换的二聚化倾向与聚集成淀粉样蛋白原纤维的能力之间存在明显的相关性。例子包括与疾病有关的蛋白质β2-微球蛋白和运甲状腺素蛋白。这导致了关于淀粉样蛋白形成途径可能具有广泛的结构域交换的提议。这种聚集途径的一个可能的结果是,所得的原纤维将掺入类似于蛋白质的结构域交换形式的结构元件,并因此反映某些天然样结构或结构域相互作用。在基于淀粉样淀粉样原纤维的魔术角旋转固态NMR和其他结构研究中,似乎许多这些蛋白质形成的原纤维不是天然的。相反,一些原纤维具有配准的平行构象,其是常见的淀粉样蛋白结构基序,例如在各种pr病毒原纤维中可见。原纤维中这种天然结构的缺乏表明,域交换能力和淀粉样蛋白形成之间的表观联系可能比乍看之下更为微妙或复杂。

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