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首页> 外文期刊>Human Molecular Genetics >Ataxin-3 with an altered conformation that exposes the polyglutamine domain is associated with the nuclear matrix.
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Ataxin-3 with an altered conformation that exposes the polyglutamine domain is associated with the nuclear matrix.

机译:具有暴露于聚谷氨酰胺结构域的改变的构象的Ataxin-3与核基质相关。

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摘要

Spinocerebellar ataxia type-3 or Machado-Joseph disease (SCA3/MJD) is a member of the CAG/polyglutamine repeat disease family. In this family of disorders, a normally polymorphic CAG repeat becomes expanded, resulting in expression of an expanded polyglutamine domain in the disease gene product. Experimental models of polyglutamine disease implicate the nucleus in pathogenesis; however, the link between intranuclear expression of expanded polyglutamine and neuronal dysfunction remains unclear. Here we demonstrate that ataxin-3, the disease protein in SCA3/MJD, adopts a unique conformation when expressed within the nucleus of transfected cells. The monoclonal antibody 1C2 is known preferentially to bind expanded polyglutamine, but we find that it also binds a fragment of ataxin-3 containing a normal glutamine repeat. In addition, expression of ataxin-3 within the nucleus exposes the glutamine domain of the full-length non-pathological protein, allowing it to bind the monoclonal antibody 1C2. Fractionation and immunochemical experiments indicate that this novel conformation of intranuclear ataxin-3 is not due to proteolysis, suggesting instead that association with nuclear protein(s) alters the structure of full-length ataxin-3 which exposes the polyglutamine domain. This conformationally altered ataxin-3 is bound to the nuclear matrix. The pathological form of ataxin-3 with an expanded polyglutamine domain also associates with the nuclear matrix. These data suggest that an early event in the pathogenesis of SCA3/MJD may be an altered conformation of ataxin-3 within the nucleus that exposes the polyglutamine domain.
机译:3型脊髓小脑共济失调或Machado-Joseph病(SCA3 / MJD)是CAG / polyglutamine重复病家族的成员。在该疾病家族中,正常多态的CAG重复序列被扩增,导致在疾病基因产物中表达了一个扩展的聚谷氨酰胺结构域。聚谷氨酰胺疾病的实验模型牵涉到核的发病机理。然而,扩大的聚谷氨酰胺的核内表达与神经元功能障碍之间的联系仍然不清楚。在这里,我们证明了SCA3 / MJD中的疾病蛋白ataxin-3,在转染细胞核内表达时采用独特的构象。已知单克隆抗体1C2优先结合扩展的聚谷氨酰胺,但我们发现它还结合了含有正常谷氨酰胺重复序列的Ataxin-3片段。此外,细胞核中的紫杉醇3的表达暴露了全长非病理蛋白的谷氨酰胺结构域,使其能够结合单克隆抗体1C2。分级分离和免疫化学实验表明,核内紫杉醇3的这种新构象不是由于蛋白水解所致,这表明与核蛋白的结合改变了全长紫杉醇3的结构,从而暴露了聚谷氨酰胺结构域。这种构象改变的紫杉素-3与核基质结合。带有扩展的聚谷氨酰胺结构域的紫杉醇3的病理形式也与核基质有关。这些数据表明,SCA3 / MJD发病机理中的一个早期事件可能是暴露多谷氨酰胺结构域的细胞核中的紫杉醇3构象的改变。

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