Department of Chemistry, Yonsei University, Seoul, 120-749 South Korea.
Anal Chem. 2015 Jun 16;87(12):6342-8. doi: 10.1021/acs.analchem.5b01207. Epub 2015 Jun 2.
Separation/isolation of subcellular species, such as mitochondria, lysosomes, peroxisomes, Golgi apparatus, and others, from cells is important for gaining an understanding of the cellular functions performed by specific organelles. This study introduces a high speed, semipreparative scale, biocompatible size sorting method for the isolation of subcellular organelle species from homogenate mixtures of HEK 293T cells using flow field-flow fractionation (FlFFF). Separation of organelles was achieved using asymmetrical FlFFF (AF4) channel system at the steric/hyperlayer mode in which nuclei, lysosomes, mitochondria, and peroxisomes were separated in a decreasing order of hydrodynamic diameter without complicated preprocessing steps. Fractions in which organelles were not clearly separated were reinjected to AF4 for a finer separation using the normal mode, in which smaller sized species can be well fractionated by an increasing order of diameter. The subcellular species contained in collected AF4 fractions were examined with scanning electron microscopy to evaluate their size and morphology, Western blot analysis using organelle specific markers was used for organelle confirmation, and proteomic analysis was performed with nanoflow liquid chromatography-tandem mass spectrometry (nLC-ESI-MS/MS). Since FlFFF operates with biocompatible buffer solutions, it offers great flexibility in handling subcellular components without relying on a high concentration sucrose solution for centrifugation or affinity- or fluorescence tag-based sorting methods. Consequently, the current study provides an alternative, competitive method for the isolation/purification of subcellular organelle species in their intact states.
从细胞中分离/隔离亚细胞物种,如线粒体、溶酶体、过氧化物酶体、高尔基体等,对于了解特定细胞器执行的细胞功能非常重要。本研究介绍了一种高速、半制备规模、生物相容性的尺寸分选方法,用于使用流场流分离(FlFFF)从 HEK 293T 细胞匀浆混合物中分离亚细胞细胞器物种。使用非对称 FlFFF(AF4)通道系统在位阻/超层模式下实现了细胞器的分离,其中核、溶酶体、线粒体和过氧化物酶体按照流体动力学直径的递减顺序分离,无需复杂的预处理步骤。没有明显分离的细胞器级分被重新注入 AF4 以正常模式进行更精细的分离,其中较小的物种可以按照直径的递增顺序很好地分离。用扫描电子显微镜检查收集的 AF4 级分中包含的亚细胞物种,以评估其大小和形态,使用细胞器特异性标志物的 Western blot 分析用于细胞器确认,并使用纳流液相色谱-串联质谱(nLC-ESI-MS/MS)进行蛋白质组学分析。由于 FlFFF 可以使用生物相容性缓冲溶液运行,因此在处理亚细胞成分时具有很大的灵活性,无需依赖高浓度蔗糖溶液进行离心或基于亲和性或荧光标记的分选方法。因此,本研究提供了一种替代的、有竞争力的方法,用于分离/纯化完整状态下的亚细胞细胞器物种。