Bilgin Mesut, Nylandsted Jesper, Jäättelä Marja, Maeda Kenji
Cell Death and Metabolism Unit, Center for Autophagy, Recycling and Disease, Danish Cancer Society Research Center, Strandboulevarden 49, DK -2100, Copenhagen, Denmark.
Methods Mol Biol. 2017;1594:19-34. doi: 10.1007/978-1-4939-6934-0_2.
Recent studies have illuminated novel roles of lysosomes that go far beyond simple catabolism and function in the coordination of cellular metabolism and signaling. Promising therapeutic strategies emerge from knowledge in the molecular mechanisms and physiological roles of lipid metabolism in lysosomes. Global monitoring of the function and dysregulation of lysosomal lipid metabolism requires a methodology that resolves the complexity of lysosomal lipidome by quantitatively detecting hundreds of lipid species of diverse physicochemical properties. We describe here a detailed protocol that couples isolation of superparamagnetic iron dextran-loaded lysosomes from cultured mammalian cell lines with quantitative mass spectrometry-based shotgun lipidomics.
最近的研究揭示了溶酶体的新作用,其作用远远超出了简单的分解代谢,在细胞代谢和信号协调中发挥作用。基于对溶酶体脂质代谢分子机制和生理作用的了解,出现了有前景的治疗策略。对溶酶体脂质代谢功能和失调进行全面监测需要一种方法,该方法通过定量检测数百种具有不同物理化学性质的脂质种类来解析溶酶体脂质组的复杂性。我们在此描述了一个详细的方案,该方案将从培养的哺乳动物细胞系中分离超顺磁性铁葡聚糖负载的溶酶体与基于定量质谱的鸟枪法脂质组学相结合。