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The structure of a folding intermediate provides insight into differences in immunoglobulin amyloidogenicity

机译:折叠中间体的结构可洞悉免疫球蛋白的淀粉样变性

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Folding intermediates play a key role in defining protein folding and assembly pathways as well as those of misfolding and aggre-gation Yet, due to their transient nature, they are poorly accessible to high-resolution techniques. Here, we made use of the intrinsically slow folding reaction of an antibody domain to characterize its major folding intermediate in detail. Furthermore, by a single point mutation we were able to trap the intermediate in equilibrium and characterize it at atomic resolution. The intermediate exhibits the basic β-barrel topology, yet some strands are distorted. Surprisingly, two short strand-connecting helices conserved in constant antibody domains assume their completely native structure already in the intermediate, thus providing a scaffold for adjacent strands. By transplanting these helical elements into β_2-microglobulin, a highly homologous member of the same superfamily, we drastically reduced its amyloidogenicity. Thus, minor structural differences in an intermediate can shape the folding landscape decisively to favor either folding or misfolding.
机译:折叠中间体在定义蛋白质折叠和组装途径以及错误折叠和聚集的途径中起着关键作用。然而,由于其短暂的特性,高分辨率技术很难获得这些中间体。在这里,我们利用抗体结构域的固有慢折叠反应来详细表征其主要折叠中间体。此外,通过单点突变,我们能够在平衡状态下捕获中间体并以原子分辨率对其进行表征。该中间体表现出基本的β-桶形拓扑,但有些链变形。令人惊讶地,在恒定抗体结构域中保守的两个短链连接螺旋假定其完全天然结构已经存在于中间体中,从而为相邻链提供了支架。通过将这些螺旋元件移植到同一超家族的高度同源成员β_2-微球蛋白中,我们大大降低了其淀粉样变性。因此,中间体中的微小结构差异可以决定性地形成折叠景观,从而有利于折叠或错折。

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