首页> 外文OA文献 >Crystal structures of truncated alphaA and alphaB crystallins reveal structural mechanisms of polydispersity important for eye lens function.
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Crystal structures of truncated alphaA and alphaB crystallins reveal structural mechanisms of polydispersity important for eye lens function.

机译:截短的alphaA和alphaB晶状体蛋白的晶体结构揭示了对晶状体功能很重要的多分散性的结构机理。

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摘要

Small heat shock proteins alphaA and alphaB crystallin form highly polydisperse oligomers that frustrate protein aggregation, crystallization, and amyloid formation. Here, we present the crystal structures of truncated forms of bovine alphaA crystallin (AAC(59-163)) and human alphaB crystallin (ABC(68-162)), both containing the C-terminal extension that functions in chaperone action and oligomeric assembly. In both structures, the C-terminal extensions swap into neighboring molecules, creating runaway domain swaps. This interface, termed DS, enables crystallin polydispersity because the C-terminal extension is palindromic and thereby allows the formation of equivalent residue interactions in both directions. That is, we observe that the extension binds in opposite directions at the DS interfaces of AAC(59-163) and ABC(68-162). A second dimeric interface, termed AP, also enables polydispersity by forming an antiparallel beta sheet with three distinct registration shifts. These two polymorphic interfaces enforce polydispersity of alpha crystallin. This evolved polydispersity suggests molecular mechanisms for chaperone action and for prevention of crystallization, both necessary for transparency of eye lenses.
机译:小型热激蛋白alphaA和alphaB crystallin形成高度多分散的低聚物,阻碍了蛋白的聚集,结晶和淀粉样蛋白的形成。在这里,我们介绍牛αA晶状蛋白(AAC(59-163))和人αB晶状蛋白(ABC(68-162))的截短形式的晶体结构,它们都包含在伴侣作用和寡聚组装中起作用的C端延伸。 。在这两种结构中,C末端延伸区都交换为相邻分子,从而形成失控的结构域交换。称为DS的该界面可实现结晶蛋白多分散性,因为C端延伸是回文的,因此可以在两个方向上形成等效的残基相互作用。也就是说,我们观察到扩展名在AAC(59-163)和ABC(68-162)的DS接口上以相反的方向绑定。第二个二聚体界面(称为AP)也可以通过形成具有三个不同配准偏移的反平行β折叠来实现多分散性。这两个多态界面增强了α晶状蛋白的多分散性。这种逐渐发展的多分散性提示分子伴侣作用和防止结晶的分子机制,这对于眼镜镜片的透明性都是必需的。

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