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首页> 外文期刊>Molecular pharmacology. >A novel Hsp90 inhibitor activates compensatory heat shock protein responses and autophagy and alleviates mutant A53T α-synuclein toxicity
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A novel Hsp90 inhibitor activates compensatory heat shock protein responses and autophagy and alleviates mutant A53T α-synuclein toxicity

机译:一种新的HSP90抑制剂激活补偿热休克蛋白反应和自噬和缓解突变体A53Tα-突触核蛋白毒性

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摘要

A potential cause of neurodegenerative diseases, including Parkinson's disease (PD), is protein misfolding and aggregation that in turn leads to neurotoxicity. Targeting Hsp90 is an attractive strategy to halt neurodegenerative diseases, and benzoquinone ansamycin (BQA) Hsp90 inhibitors such as geldanamycin (GA) and 17-(allylamino)-17-demethoxygeldanamycin have been shown to be beneficial in mutant A53T ?synuclein PD models. However, current BQA inhibitors result in off-target toxicities via redox cycling and/or arylation of nucleophiles at the C19 position. We developed novel 19-substituted BQA (19BQA) as a means to prevent arylation. In this study, our data demonstrated that 19-phenyl-GA, a lead 19BQA in the GA series, was redox stable and exhibited little toxicity relative to its parent quinone GA in human dopaminergic SH-SY5Y cells as examined by oxygen consumption, trypan blue, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide (MTT), and apoptosis assays. Meanwhile, 19-phenyl-GAretained the ability to induce autophagy and potentially protective heat shock proteins (HSPs) such as Hsp70 and Hsp27. We found that transduction of A53T, but not wild type (WT) ?synuclein, induced toxicity in SH-SY5Y cells. 19-Phenyl-GA decreased oligomer formation and toxicity of A53T ?synuclein in transduced cells. Mechanistic studies indicated that mammalian target of rapamycin (mTOR)/p70 ribosomal S6 kinase signaling was activated by A53T but not WT ?synuclein, and 19-phenyl-GA decreased mTOR activation that may be associated with A53T ?synuclein toxicity. In summary, our results indicate that 19BQAs such as 19-phenyl-GAmay provide ameans to modulate protein-handling systems including HSPs and autophagy, thereby reducing the aggregation and toxicity of proteins such as mutant A53T ?synuclein.
机译:包括帕金森病(Pd)在内的神经变性疾病的潜在原因是蛋白质错误折叠和聚集,又导致神经毒性。靶向HSP90是止开神经退行性疾病的有吸引力的策略,并且已经证明苯并喹啉霉素(GA)和17-(allylamino)-17-甲氧基霉蛋白酶如Geldanamycin(Ga)和17-(allylamino)-17-脱氧糖醛霉素在突变体A53Tα中有益。然而,目前的BQA抑制剂通过C19位置的氧化还原循环和/或亲核试剂的芳族化导致偏离靶向毒性。我们开发了新的19取代BQA(19BQA),作为防止芳族化的手段。在这项研究中,我们的数据表明,GA系列中的19BQA是19BQA的19BQA是氧化还原稳定的,并且通过氧气消耗,台盼蓝的氧气消耗量,在人的多巴胺能SH-SY5Y细胞中表现出几乎毒性。 ,3-(4,5-二甲基噻唑-2-基)-2,5-二苯基 - 四唑溴(MTT)和细胞凋亡测定。同时,19苯基 - 装饰了诱导自噬和潜在保护热休克蛋白(HSP),例如Hsp70和Hsp27的能力。我们发现A53T的转导,但不是野生型(WT)?突触核蛋白,诱导SH-SY5Y细胞中的毒性。 19-苯基-Ga降低A53T的低聚物形成和A53Tα的毒性。转导细胞中的突触核苷酸。机械研究表明,雷帕霉素(mTOR)/ p70核糖体S6激酶信号传导的哺乳动物靶由A53T而不是WTα而活化,但是突触核蛋白和19-苯基-GA减少的MTOR活化,其可与A53Tα相关联。突触核蛋白毒性。总之,我们的结果表明,19BQAS如19-Phenyl-Gamay提供了ameans调节蛋白质处理系统,包括HSP和自噬,从而减少蛋白质如突变体A53T的聚集和毒性突变蛋白。

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