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首页> 外文期刊>Journal of Molecular Biology >Characterization of the Structure and the Amyloidogenic Properties of the Josephin Domain of the Polyglutamine-containing Protein Ataxin-3.
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Characterization of the Structure and the Amyloidogenic Properties of the Josephin Domain of the Polyglutamine-containing Protein Ataxin-3.

机译:含聚谷氨酰胺蛋白Ataxin-3的约瑟芬域的结构和淀粉样蛋白生成特性的表征。

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Expansion of the polyglutamine (polyQ) region in the protein ataxin-3 is associated with spinocerebellar ataxia type 3, an inherited neurodegenerative disorder that belongs to the family of polyQ diseases. Increasing evidence indicates that protein aggregation and fibre formation play an important role in these pathologies. In a previous study, we determined the domain architecture of ataxin-3, suggesting that it comprises a globular domain, named Josephin, and a more flexible C-terminal region, that includes the polyQ tract. Here, we have characterised for the first time the biophysical properties of the isolated Josephin motif, showing that it is an autonomously folded unit and that it has no significant interactions with the C-terminal region. Study of its thermodynamic stability indicates that Josephin has an intrinsic tendency to aggregate and forms temperature-induced fibrils similar to those described for expanded ataxin-3. We show that, under destabilising conditions, the behaviours of the isolated Josephin domain and ataxin-3 are extremely similar. Our data therefore strongly suggest that the stability and aggregation properties of non-expanded ataxin-3 are determined by those of the Josephin domain, which is sufficient to reproduce the behaviour of the full-length protein. Our data support a mechanism in which the thermodynamic stability of ataxin-3 is governed by the properties of the Josephin domain, but the presence of an expanded polyQ tract increases dramatically the protein's tendency to aggregate.
机译:蛋白紫杉素-3中的聚谷氨酰胺(polyQ)区域的扩张与脊髓小脑共济失调3型有关,这是一种遗传性神经退行性疾病,属于polyQ疾病家族。越来越多的证据表明蛋白质聚集和纤维形成在这些病理中起重要作用。在先前的研究中,我们确定了ataxin-3的结构域结构,表明它包含一个名为Josephin的球形结构域和一个更灵活的C末端区域,其中包括polyQ束。在这里,我们首次表征了分离的约瑟芬基序的生物物理特性,表明它是一个自主折叠的单位,并且与C端区域没有明显的相互作用。对它的热力学稳定性的研究表明,约瑟芬具有固有的聚集趋势,并形成温度诱导的原纤维,类似于针对扩展的紫杉醇3所述的原纤维。我们表明,在不稳定的条件下,孤立的约瑟芬域和紫杉醇3的行为极为相似。因此,我们的数据有力地表明,未扩增的紫杉醇3的稳定性和聚集特性由约瑟芬域的稳定性和聚集特性决定,这足以再现全长蛋白质的行为。我们的数据支持了一种机制,其中共济失调素3的热力学稳定性受约瑟芬域的特性支配,但存在一个扩展的polyQ链则极大地增加了蛋白质聚集的趋势。

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