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小分子对突变型亨廷顿蛋白聚集构象体的检测及对十二烷基硫酸钠可溶性纤维状寡聚体的调控

Detection of Mutant Huntingtin Aggregation Conformers and Modulation of SDS-Soluble Fibrillar Oligomers by Small Molecules.

作者信息

Sontag Emily Mitchell, Lotz Gregor P, Yang Guocheng, Sontag Christopher J, Cummings Brian J, Glabe Charles G, Muchowski Paul J, Thompson Leslie Michels

机构信息

Department of Biological Chemistry University of California, Irvine, CA, USA.

出版信息

J Huntingtons Dis. 2012;1(1):119-32. doi: 10.3233/JHD-2012-129004.

Abstract

The Huntington's disease (HD) mutation leads to a complex process of Huntingtin (Htt) aggregation into multimeric species that eventually form visible inclusions in cytoplasm, nuclei and neuronal processes. One hypothesis is that smaller, soluble forms of amyloid proteins confer toxic effects and contribute to early cell dysfunction. However, analysis of mutant Htt aggregation intermediates to identify conformers that may represent toxic forms of the protein and represent potential drug targets remains difficult. We performed a detailed analysis of aggregation conformers in multiple in vitro, cell and ex vivo models of HD. Conformation-specific antibodies were used to identify and characterize aggregation species, allowing assessment of multiple conformers present during the aggregation process. Using a series of assays together with these antibodies, several forms could be identified. Fibrillar oligomers, defined as having a β-sheet rich conformation, are observed in vitro using recombinant protein and in protein extracts from cells in culture or mouse brain and shown to be globular, soluble and non-sedimentable structures. Compounds previously described to modulate visible inclusion body formation and reduce toxicity in HD models were also tested and consistently found to alter the formation of fibrillar oligomers. Interestingly, these compounds did not alter the rate of visible inclusion formation, indicating that fibrillar oligomers are not necessarily the rate limiting step of inclusion body formation. Taken together, we provide insights into the structure and formation of mutant Htt fibrillar oligomers that are modulated by small molecules with protective potential in HD models.

摘要

亨廷顿舞蹈病(HD)突变导致亨廷顿蛋白(Htt)聚集成多聚体的复杂过程,最终在细胞质、细胞核和神经突中形成可见的包涵体。一种假说认为,淀粉样蛋白的较小可溶性形式具有毒性作用,并导致早期细胞功能障碍。然而,分析突变型Htt聚集中间体以鉴定可能代表该蛋白毒性形式并作为潜在药物靶点的构象仍然很困难。我们对HD的多种体外、细胞和体内模型中的聚集构象进行了详细分析。使用构象特异性抗体来鉴定和表征聚集物种,从而评估聚集过程中存在的多种构象。结合这些抗体使用一系列检测方法,可以鉴定出几种形式。在体外使用重组蛋白以及在培养细胞或小鼠脑的蛋白提取物中观察到具有富含β-折叠构象的纤维状寡聚体,它们被证明是球状、可溶且不可沉淀的结构。还测试了先前描述的可调节可见包涵体形成并降低HD模型中毒性的化合物,一致发现它们会改变纤维状寡聚体的形成。有趣的是,这些化合物并没有改变可见包涵体形成的速率,这表明纤维状寡聚体不一定是包涵体形成的限速步骤。综上所述,我们深入了解了突变型Htt纤维状寡聚体的结构和形成,这些寡聚体可被HD模型中具有保护潜力的小分子调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d5d/3786168/67e4f9fbb22c/nihms-422273-f0001.jpg

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