线粒体
神经科学
生物
细胞生物学
仿形(计算机编程)
电池类型
细胞
功能多样性
分子神经科学
计算生物学
计算机科学
遗传学
受体
操作系统
生态学
作者
Caroline Fecher,Laura Trovò,Stephan A. Müller,Nicolas Snaidero,Jennifer Wettmarshausen,Sylvia Heink,Oskar Ortiz,Ingrid Wagner,Ralf Kühn,J. Hartmann,Rosa Maria Karl,Arthur Konnerth,Thomas Korn,Wolfgang Wurst,Doron Merkler,Stefan F. Lichtenthaler,Fabiana Perocchi,Thomas Misgeld
标识
DOI:10.1038/s41593-019-0479-z
摘要
Mitochondria vary in morphology and function in different tissues; however, little is known about their molecular diversity among cell types. Here we engineered MitoTag mice, which express a Cre recombinase-dependent green fluorescent protein targeted to the outer mitochondrial membrane, and developed an isolation approach to profile tagged mitochondria from defined cell types. We determined the mitochondrial proteome of the three major cerebellar cell types (Purkinje cells, granule cells and astrocytes) and identified hundreds of mitochondrial proteins that are differentially regulated. Thus, we provide markers of cell-type-specific mitochondria for the healthy and diseased mouse and human central nervous systems, including in amyotrophic lateral sclerosis and Alzheimer's disease. Based on proteomic predictions, we demonstrate that astrocytic mitochondria metabolize long-chain fatty acids more efficiently than neuronal mitochondria. We also characterize cell-type differences in mitochondrial calcium buffering via the mitochondrial calcium uniporter (Mcu) and identify regulator of microtubule dynamics protein 3 (Rmdn3) as a determinant of endoplasmic reticulum-mitochondria proximity in Purkinje cells. Our approach enables exploring mitochondrial diversity in many in vivo contexts.
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