结合线粒体形态特征和最常见的化学亚结构分析线粒体复合体I抑制剂

Chung-Chih Lin, Jyh-Ying Peng, Y. Tseng, C. Chou, F. Chang, Y. Wu, L. Kao, Chun-Nan Hsu
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引用次数: 0

摘要

毒素作用机制的研究对于揭示帕金森病的病因学具有重要意义。配合物I抑制剂是PD毒素的主要种类,其化学特性已被广泛研究。然而,线粒体形态变化的特定化学结构仍然未知。我们开发了一种结合线粒体形态定量和化学子结构计算的药物分析系统,使我们能够发现线粒体形态变化特有的化学子结构。利用该系统,我们量化了无性系乙酰原素诱导的线粒体形态,并计算了诱导类似细胞反应的乙酰原素的最大共同亚结构。我们发现(1)甘露酸中靠近γ-内酯的羟基对细胞核大小缩小和线粒体聚集的作用更强;(2)双四氢呋喃乙酰原可能比单四氢呋喃乙酰原有更少的线粒体聚集;(3)与γ-内酯端相反的烷基链羟基越少,线粒体分裂越少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Profiling mitochondrial complex I inhibitors by combining mitochondrial morphological features and maximum common chemical substructures
Studies on the mechanism of toxins are important to reveal the etiology of Parkinson's disease (PD). Complex I inhibitors are a main group of PD toxins, and their chemical features have been intensively studied. However, the chemical structures specific to mitochondrial morphological changes are still unknown. We developed a drug profiling system that combines mitochondrial morphological quantification and chemical substructure computation, which allows us to discover chemical substructures specific to mitochondrial morphological changes. Using this system, we quantified the mitochondrial morphology induced by annonaceous acetogenins, and calculated the maximum common substructure of acetogenins inducing similar cell responses. We discovered that (1) the hydroxyl groups close to γ-lactone in annonacin may result in stronger effects on nuclear size reduction and mitochondrial aggregation; (2) bis-THF acetogenins may have less mitochondria aggregation than those of mono-THF acetogenins; (3) less hydroxyl group at the alkyl chain opposite from γ-lactone end may result in less mitochondrial fission.
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