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首页> 外文期刊>Cell chemical biology >Identification of New Activators of Mitochondrial Fusion Reveals a Link between Mitochondrial Morphology and Pyrimidine Metabolism
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Identification of New Activators of Mitochondrial Fusion Reveals a Link between Mitochondrial Morphology and Pyrimidine Metabolism

机译:线粒体融合的新活化剂的鉴定显示了线粒体形态和嘧啶代谢之间的联系

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Mitochondria are dynamic organelles that produce most of the cellular ATP, and are involved in many other cellular functions such as Ca2+signaling, differentiation, apoptosis, cell cycle, and cell growth. One?key process of mitochondrial dynamics is mitochondrial fusion, which is catalyzed by mitofusins (MFN1?and MFN2) and OPA1. The outer mitochondrial membrane protein MFN2 plays a relevant role in the?maintenance of mitochondrial metabolism, insulin signaling, and mutations that cause neurodegenerative disorders. Therefore, modulation of proteins involved in mitochondrial dynamics has emerged as?a potential pharmacological strategy. Here, we report the identification of small molecules by high-throughput screen that promote mitochondrial elongation in an MFN1/MFN2-dependent manner. Detailed analysis of their mode of action reveals a previously unknown connection between pyrimidine metabolism and mitochondrial dynamics. Our data indicate a link between pyrimidine biosynthesis and mitochondrial dynamics, which maintains cell survival under stress conditions characterized by loss of pyrimidine synthesis.
机译:线粒体是产生大部分细胞ATP的动态细胞器,并且涉及许多其他细胞功能,例如Ca2 +信号传导,分化,细胞凋亡,细胞周期和细胞生长。一种?线粒体动力学的关键过程是线粒体融合,其被Mitofusins(MFN1α和MFN2)和OPA1催化。外部线粒体膜蛋白MFN2在α维持线粒体代谢,胰岛素信号传导和引起神经变性障碍的突变中起着相关作用。因此,患有线粒体动力学的蛋白质的调节已经出现为潜在的药理学策略。在这里,我们通过高通量筛网报告鉴定小分子,促进MFN1 / MFN2依赖性方式的线粒体伸长。对其作用方式的详细分析揭示了嘧啶代谢和线粒体动态之间先前未知的联系。我们的数据表明嘧啶生物合成和线粒体动态之间的联系,其在应激条件下保持细胞存活率,其特征在于嘧啶合成损失。

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