Rodrigues Jorge M P, Pereira Cátia S, Fontes Natacha, Gerós Hernâni, Côrte-Real Manuela
Centre of Molecular and Environmental Biology, CBMA, University of Minho, Braga, Portugal.
Centre of Biological Engineering, CEB, University of Minho, Braga, Portugal.
Methods Mol Biol. 2018;1789:101-115. doi: 10.1007/978-1-4939-7856-4_8.
A series of optimized protocols to isolate vacuoles from both yeast and plant cells, and to characterize the purified organelles at a functional and structural level, are described. For this purpose, we took advantage of the combined use of cell fractionation techniques with different fluorescence-based approaches namely flow cytometry, fluorescence microscopy and spectrofluorimetry. These protocols altogether constitute valuable tools for the study of vacuole structure and function, as well as for the high-throughput screening of drug libraries to identify new molecules that target the vacuole.
本文描述了一系列优化的方案,用于从酵母和植物细胞中分离液泡,并在功能和结构水平上对纯化的细胞器进行表征。为此,我们利用了细胞分级分离技术与不同的基于荧光的方法(即流式细胞术、荧光显微镜和荧光分光光度法)的联合使用。这些方案共同构成了研究液泡结构和功能的宝贵工具,以及用于高通量筛选药物库以鉴定靶向液泡的新分子的工具。