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Ure2p朊病毒蛋白的丝状物具有交叉β核心结构。

Filaments of the Ure2p prion protein have a cross-beta core structure.

作者信息

Baxa Ulrich, Cheng Naiqian, Winkler Dennis C, Chiu Thang K, Davies David R, Sharma Deepak, Inouye Hideyo, Kirschner Daniel A, Wickner Reed B, Steven Alasdair C

机构信息

Laboratory of Structural Biology, National Institute of Arthritis, Musculoskeletal, and Skin Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

J Struct Biol. 2005 May;150(2):170-9. doi: 10.1016/j.jsb.2005.02.007.

Abstract

Formation of filaments by the Ure2 protein constitutes the molecular mechanism of the [URE3] prion in yeast. According to the "amyloid backbone" model, the N-terminal asparagine-rich domains of Ure2p polymerize to form an amyloid core fibril that is surrounded by C-terminal domains in their native conformation. Protease resistance and Congo Red binding as well as beta-sheet content detected by spectroscopy-all markers for amyloid-have supported this model, as has the close resemblance between 40 A N-domain fibrils and the fibrillar core of intact Ure2p filaments visualized by cryo-electron microscopy and scanning transmission electron microscopy. Here, we present electron diffraction and X-ray diffraction data from filaments of Ure2p, of N-domains alone, of fragments thereof, and of an N-domain-containing fusion protein that demonstrate in each case the 4.7A reflection that is typical for cross-beta structure and highly indicative of amyloid. This reflection was observed for specimens prepared by air-drying with and without sucrose embedding. To confirm that the corresponding structure is not an artifact of air-drying, the reflection was also demonstrated for specimens preserved in vitreous ice. Local area electron diffraction and X-ray diffraction from partially aligned specimens showed that the 4.7A reflection is meridional and therefore the underlying structure is cross-beta.

摘要

Ure2蛋白形成丝状物构成了酵母中[URE3]朊病毒的分子机制。根据“淀粉样蛋白骨架”模型,Ure2p的富含N端天冬酰胺的结构域聚合形成一个淀粉样蛋白核心原纤维,其周围是处于天然构象的C端结构域。蛋白酶抗性、刚果红结合以及光谱检测到的β-折叠含量——所有淀粉样蛋白的标志物——都支持了该模型,通过冷冻电子显微镜和扫描透射电子显微镜观察到的40 Å N结构域原纤维与完整Ure2p丝状物的纤维状核心之间的高度相似性也支持了该模型。在此,我们展示了来自Ure2p丝状物、单独的N结构域、其片段以及一种含N结构域的融合蛋白的电子衍射和X射线衍射数据,这些数据在每种情况下都证明了4.7 Å反射,这是交叉β结构的典型特征,也是淀粉样蛋白的高度指示性特征。对于通过空气干燥制备的有无蔗糖包埋的标本都观察到了这种反射。为了确认相应结构不是空气干燥的假象,对于保存在玻璃态冰中的标本也证明了这种反射。来自部分排列标本的局部区域电子衍射和X射线衍射表明,4.7 Å反射是子午线方向的,因此其基础结构是交叉β结构。

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