新型小分子衍生物通过改善线粒体融合提高亨廷顿氏病细胞模型的存活率。

IF 3.6 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Pradeep Kodam, Vaishali Kumar, Paramita Pattanayak, Praharsh Vitta, Tanmay Chatterjee, Shuvadeep Maity
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引用次数: 0

摘要

线粒体功能障碍是亨廷顿舞蹈病(HD)病理生理学中涉及的主要细胞条件之一。具有异常PolyQ重复序列的突变亨廷顿蛋白的积累导致纹状体神经元死亡,线粒体断裂加剧。为了寻找针对HD疾病的神经保护分子,我们合成了一组基于异恶唑的小分子,以筛选它们作为改善线粒体健康的有益化学物质的适用性。其中一种异恶唑衍生物C-5的系统表征表明,在HD条件下,通过重新平衡裂变融合动力学,线粒体健康得到改善,细胞凋亡减少。基因和蛋白表达分析证实,C-5处理通过上调PGC-1α(一种控制线粒体生物发生的转录共激活因子)的转录,增强了线粒体融合调节因子(MFN1/2)的表达。总的来说,这种新型融合激动剂可能成为治疗polyq介导的线粒体功能障碍的一种新的治疗选择,这是HD病理的标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel small molecule derivatives improve survivability in the cellular model of Huntington's disease via improving mitochondrial fusion.

Mitochondrial dysfunction is one of the primary cellular conditions involved in developing Huntington's disease (HD) pathophysiology. The accumulation of mutant huntingtin protein with abnormal PolyQ repeats resulted in the death of striatal neurons with enhanced mitochondrial fragmentation. In search of neuroprotective molecules against HD conditions, we synthesized a set of isoxazole-based small molecules to screen their suitability as beneficial chemicals improving mitochondrial health. Systematic characterization of one of these isoxazole derivatives, C-5, demonstrated improved mitochondrial health with reduced apoptosis via rebalancing fission-fusion dynamics in HD condition. Gene and protein expression analysis confirmed that C-5 treatment enhanced the expression of mitochondrial fusion regulators (MFN1/2) via transcriptional upregulation of PGC-1α, a transcriptional co-activator controlling mitochondrial biogenesis. Collectively, this novel fusion agonist can potentially become a new therapeutic alternative for treating PolyQ-mediated mitochondrial dysfunction, a hallmark of HD pathology.

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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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