生物
线粒体基质
线粒体
代谢物
胞浆
分区(防火)
生物化学
细胞器
细胞生物学
新陈代谢
代谢组学
生物信息学
酶
作者
Walter W. Chen,Elizaveta Freinkman,Timothy C. Wang,Kıvanç Birsoy,David M. Sabatini
出处
期刊:Cell
[Cell Press]
日期:2016-08-01
卷期号:166 (5): 1324-1337.e11
被引量:435
标识
DOI:10.1016/j.cell.2016.07.040
摘要
Mitochondria house metabolic pathways that impact most aspects of cellular physiology. While metabolite profiling by mass spectrometry is widely applied at the whole-cell level, it is not routinely possible to measure the concentrations of small molecules in mammalian organelles. We describe a method for the rapid and specific isolation of mitochondria and use it in tandem with a database of predicted mitochondrial metabolites (MITObolome) to measure the matrix concentrations of more than 100 metabolites across various states of respiratory chain (RC) function. Disruption of the RC reveals extensive compartmentalization of mitochondrial metabolism and signatures unique to the inhibition of each RC complex. Pyruvate enables the proliferation of RC-deficient cells but has surprisingly limited effects on matrix contents. Interestingly, despite failing to restore matrix NADH/NAD balance, pyruvate does increase aspartate, likely through the exchange of matrix glutamate for cytosolic aspartate. We demonstrate the value of mitochondrial metabolite profiling and describe a strategy applicable to other organelles.
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