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Effects of the enlargement of poly-glutamine segments on the structure and folding of ataxin-2 and ataxin-3 proteins

机译:聚谷氨酰胺片段的扩增对ataxin-2和ataxin-3蛋白的结构和折叠的影响

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摘要

Spinocerebellar ataxia type 2 (SCA2) and type 3 (SCA3) are two common autosomal-dominant inherited ataxia syndromes, both of which are related to the unstable expansion of tri-nucleotide CAG repeats in the coding region of the related ATXN2 and ATXN3 genes, respectively. The poly-glutamine (poly-Q) tract encoded by the CAG repeats has long been recognized as an important factor in disease pathogenesis and progress. In this study, using the I-TASSER method for 3D structure prediction, we investigated the effect of poly-Q tract enlargement on the structure and folding of ataxin-2 and ataxin-3 proteins. Our results show good agreement with the known experimental structures of the Josephin and UIM domains providing credence to the simulation results presented here, which show that the enlargement of the poly-Q region not only affects the local structure of these regions but also affects the structures of functional domains as well as the whole protein. The changes observed in the predicted models of the UIM domains in ataxin-3 when the poly-Q track is enlarged provide new insights on possible pathogenic mechanisms.
机译:脊髓小脑性共济失调2型(SCA2)和3型(SCA3)是两种常见的常染色体显性遗传共济失调综合症,均与三核苷酸CAG重复序列在相关ATXN2和ATXN3基因编码区的不稳定扩增有关,分别。长期以来,由CAG重复序列编码的聚谷氨酰胺(poly-Q)通道被认为是疾病发病机理和进展的重要因素。在这项研究中,使用I-TASSER方法进行3D结构预测,我们研究了多Q链扩大对ataxin-2和ataxin-3蛋白的结构和折叠的影响。我们的结果表明,与约瑟芬和UIM域的已知实验结构良好吻合,为此处给出的模拟结果提供了依据,这表明poly-Q区的扩大不仅影响这些区域的局部结构,而且影响结构功能域以及整个蛋白质当poly-Q轨道扩大时,在紫杉素3中的UIM结构域的预测模型中观察到的变化为可能的致病机理提供了新的见解。

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