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Chronic administration of cholesterol oximes in mice increases transcription of cytoprotective genes and improves transcriptome alterations induced by alpha-synuclein overexpression in nigrostriatal dopaminergic neurons

机译:小鼠长期服用胆固醇肟可增加黑质纹状体多巴胺能神经元中α-突触核蛋白过表达诱导的细胞保护性基因的转录并改善转录组改变

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摘要

Cholesterol-oximes TRO19622 and TRO40303 target outer mitochondrial membrane proteins and have beneficial effects in preclinical models of neurodegenerative diseases leading to their advancement to clinical trials. Dopaminergic neurons degenerate in Parkinson’s disease (PD) and are prone to oxidative stress and mitochondrial dysfunction. In order to provide insights into the neuroprotective potential of TRO19622 and TRO40303 for dopaminergic neurons in vivo, we assessed their effects on gene expression in laser captured nigrostriatal dopaminergic neurons of wildtype mice and of mice that over-express alpha-synuclein, a protein involved in both familial and sporadic forms of PD (Thy1-aSyn mice). Young mice were fed the drugs in food pellets or a control diet from 1 to 4 months of age, approximately 10 months before the appearance of striatal dopamine loss in this model. Unbiased weighted gene co-expression network analysis (WGCNA) of transcriptional changes revealed effects of cholesterol oximes on transcripts related to mitochondria, cytoprotection and anti-oxidant response in wild-type and transgenic mice, including increased transcription of stress defense (e.g. Prdx1, Prdx2, Glrx2, Hspa9, Pink1, Drp1, Trak1) and dopamine-related (Th, Ddc, Gch1, Dat, Vmat2, Drd2, Chnr6a) genes. Even at this young age transgenic mice showed alterations in transcripts implicated in mitochondrial function and oxidative stress (e.g. Bcl-2, Bax, Casp3, Nos2), and both drugs normalized about 20% of these alterations. Young Thy1-aSyn mice exhibit motor deficits that differ from parkinsonism and are established before the onset of treatment; these deficits were not improved by cholesterol oximes. However, high doses of TRO40303 improved olfaction and produced the same effects as dopamine agonists on a challenging beam test, specifically an increase in footslips, an observation congruent with its effects on transcripts involved in dopamine synthesis. High doses of TRO19622 increased alpha-synuclein aggregates in the substantia nigra; this effect, not seen with TRO40303 was inconsistent and may represent a protective mechanism as in other neurodegenerative diseases. Overall, the results suggest that cholesterol oximes, while not improving early effects of alpha-synuclein overexpression on motor behavior or pathology, may ameliorate the function and resilience of dopaminergic neurons in vivo and support further studies of neuroprotection in models with dopaminergic cell loss.
机译:胆固醇肟TRO19622和TRO40303靶向线粒体外膜蛋白,在神经退行性疾病的临床前模型中具有有益作用,从而使其进入临床试验。多巴胺能神经元在帕金森氏病(PD)中退化,并容易发生氧化应激和线粒体功能障碍。为了深入了解TRO19622和TRO40303对体内多巴胺能神经元的神经保护潜力,我们评估了它们对野生型小鼠和过量表达α-突触核蛋白(一种参与该蛋白的小鼠)的激光捕获的黑质纹状体多巴胺能神经元基因表达的影响。 PD的家族形式和散发形式(Thy1-aSyn小鼠)。在此模型中出现纹状多巴胺流失约10个月之前,从1到4个月大时以食物颗粒或对照饮食喂养年轻小鼠药物。转录变化的无偏加权基因共表达网络分析(WGCNA)显示胆固醇肟对野生型和转基因小鼠中与线粒体相关的转录本,细胞保护和抗氧化反应的影响,包括增强的应激防御转录(如Prdx1,Prdx2) ,Glrx2,Hspa9,Pink1,Drp1,Trak1)和多巴胺相关(Th,Ddc,Gch1,Dat,Vmat2,Drd2,Chrr6a)基因。即使在这个年幼的年龄,转基因小鼠也显示出与线粒体功能和氧化应激有关的转录本改变(例如Bcl-2,Bax,Casp3,Nos2),并且两种药物均使这些改变标准化了约20%。年轻的Thy1-aSyn小鼠表现出与帕金森病不同的运动缺陷,并且在治疗开始之前就已经建立。胆固醇肟不能改善这些缺陷。但是,高剂量的TRO40303改善了嗅觉,并在具有挑战性的光束测试中产生了与多巴胺激动剂相同的效果,特别是增加了滑移,这一观察结果与它对涉及多巴胺合成的转录本的影响是一致的。大剂量TRO19622增加黑质中的α-突触核蛋白聚集; TRO40303所未见的这种作用是不一致的,可能代表了其他神经退行性疾病中的一种保护机制。总体而言,结果表明胆固醇肟虽然不能改善α-突触核蛋白过表达对运动行为或病理的早期影响,但可以改善体内多巴胺能神经元的功能和弹性,并支持对多巴胺能细胞丢失模型中神经保护作用的进一步研究。

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