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首页> 外文期刊>Human Molecular Genetics >Aggresomes protect cells by enhancing the degradation of toxic polyglutamine-containing protein.
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Aggresomes protect cells by enhancing the degradation of toxic polyglutamine-containing protein.

机译:聚集蛋白通过增强有毒的含聚谷氨酰胺的蛋白质的降解来保护细胞。

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摘要

Expression of misfolded protein in cultured cells frequently leads to the formation of juxtanuclear inclusions that have been termed 'aggresomes'. Aggresome formation is an active cellular response that involves trafficking of the offending protein along microtubules, reorganization of intermediate filaments and recruitment of components of the ubiquitin proteasome system. Whether aggresomes are benevolent or noxious is unknown, but they are of particular interest because of the appearance of similar inclusions in protein deposition diseases. Here we present evidence that aggresomes serve a cytoprotective function and are associated with accelerated turnover of mutant proteins. We show that mutant androgen receptor (AR), the protein responsible for X-linked spinobulbar muscular atrophy, forms insoluble aggregates and is toxic to cultured cells. Mutant AR was also found to form aggresomes in a process distinct from aggregation. Molecular and pharmacological interventions were used to disrupt aggresome formation, revealing their cytoprotective function. Aggresome-forming proteins were found to have an accelerated rate of turnover, and this turnover was slowed by inhibition of aggresome formation. Finally, we show that aggresome-forming proteins become membrane-bound and associate with lysosomal structures. Together, these findings suggest that aggresomes are cytoprotective, serving as cytoplasmic recruitment centers to facilitate degradation of toxic proteins.
机译:在培养细胞中表达错误折叠的蛋白质通常会导致形成近核内含物,这种内含物被称为“聚集体”。聚集体形成是一种活跃的细胞反应,涉及沿着微管转运有问题的蛋白质,中间丝的重组和泛素蛋白酶体系统组分的募集。聚集体是仁慈的还是有害的尚不清楚,但由于在蛋白质沉积疾病中出现了相似的内含物,它们引起了人们的特别关注。在这里,我们提供证据表明,聚集体具有细胞保护功能,并与突变蛋白的加速更新有关。我们显示,突变雄激素受体(AR),负责X连锁的脊髓球型肌萎缩症的蛋白质,形成不溶的聚集体,对培养的细胞有毒。还发现突变AR在不同于聚集的过程中形成聚集体。分子和药理学干预被用来破坏聚集体的形成,揭示它们的细胞保护功能。发现形成聚集体的蛋白质具有更快的周转速率,并且通过抑制聚集体形成而减缓了该周转。最后,我们显示了形成聚集体的蛋白质被膜结合并与溶酶体结构相关。总之,这些发现表明,聚集体具有细胞保护作用,充当细胞质募集中心以促进有毒蛋白质的降解。

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