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Purification of Polyglutamine Aggregates and Identification of Elongation Factor-1α and Heat Shock Protein 84 as Aggregate-Interacting Proteins

机译:聚谷氨酰胺聚集体的纯化及延伸因子-1α和热激蛋白84的鉴定为聚集体相互作用蛋白。

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摘要

Aggregates of green fluorescent protein (GFP)-fused truncated N-terminal huntingtin containing abnormally long polyglutamine tracts (150 repeats of glutamine residue) were purified from an ecdysone-inducible mutant neuro2A cell line (HD150Q-28) by using a fluorescence-activated cell sorter. To analyze the aggregate-interacting proteins, we subjected the purified aggregates to SDS-PAGE; prominent protein bands in the gel were digested with Achromobactor lysyl endopeptidase, followed by a HPLC-mass spectrometry (MS) analysis. The resulting data of tandem MS analysis revealed that, in addition to ubiquitin and widely reported chaperone proteins such as heat shock cognate 70 (HSC70), human DNA J-1 (HDJ-1), and HDJ-2, the translational elongation factor-1α (EF-1α) and heat shock protein 84 (HSP84) also were recognized as aggregate-interacting proteins. Sequestration of these proteins to aggregates was confirmed further by several immunochemical methods. We confirmed that, in addition to the other known proteins, EF-1α and HSP84 also colocalized with the intracellular aggregates. An assay of the transient expression of EF-1α and HSP84 in HD150Q-28 cells revealed that both proteins improved cell viability. Moreover, the rate of aggregate formation decreased in both transfectants. Our study suggests that both EF-1α and HSP84 are involved in the neurodegenerative process of polyglutamine diseases.
机译:通过使用荧光激活的细胞从蜕皮激素诱导的突变型Neuro2A细胞系(HD150Q-28)中纯化出绿色荧光蛋白(GFP)融合的截短的N末端截短的N末端亨廷顿蛋白,这些蛋白含有异常长的聚谷氨酰胺片段(150个重复的谷氨酰胺残基)。分拣机。为了分析与聚集体相互作用的蛋白质,我们对纯化的聚集体进行了SDS-PAGE。凝胶中的显着蛋白条带用消色团赖氨酰内肽酶消化,然后进行HPLC-质谱(MS)分析。串联质谱分析的结果数据表明,除了泛素和广泛报道的伴侣蛋白(如热休克同源蛋白70(HSC70),人DNA J-1(HDJ-1)和HDJ-2)外,翻译延伸因子- 1α(EF-1α)和热激蛋白84(HSP84)也被认为是聚集体相互作用蛋白。通过几种免疫化学方法进一步证实了将这些蛋白质螯合为聚集体。我们确认,除其他已知蛋白外,EF-1α和HSP84也与细胞内聚集体共定位。 EF-1α和HSP84在HD150Q-28细胞中瞬时表达的测定表明,这两种蛋白均可提高细胞活力。而且,两种转染子中聚集体形成的速率均降低。我们的研究表明,EF-1α和HSP84都参与了聚谷氨酰胺疾病的神经变性过程。

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