Carosi Julian M, Hattersley Kathryn J, Cui Yi, Yang Zhe, Teasdale Rohan D, Sargeant Timothy J
Lysosomal Health in Ageing, Hopwood Centre for Neurobiology, South Australian Health & Medical Research Institute, Adelaide, Australia.
Centre for Cancer Biology, University of South Australia, Adelaide, Australia.
Bio Protoc. 2019 Sep 20;9(18):e3362. doi: 10.21769/BioProtoc.3362.
The enrichment of lysosomes is a useful way to study their structure and function. These dynamic vesicles can be enriched from cell cultures in a variety of ways including immunoprecipitation and fluorescence-activated organelle sorting. These methods are extremely precise but often require the transfection and expression of an affinity or fluorophore-tagged lysosomal membrane protein. A simpler approach uses differential density of subcellular organelles, which are characteristic to a particular type of organelle. Separation of organelles along a density-gradient enables fractionation to enrich for specific organelles (such as lysosomes) in their native state. This protocol outlines an optimized method for enriching lysosomes from HeLa cells with a continuous density-gradient that contains Percoll. Gentle cell lysis and extraction conditions yield dense-fractions that are enriched with functional and intact lysosomes, which can be assayed in downstream analyses. This method is quick (conducted in less than 2 h after harvesting cells), and can be easily scaled and optimized for other cell types.
溶酶体的富集是研究其结构和功能的一种有效方法。这些动态囊泡可以通过多种方式从细胞培养物中富集,包括免疫沉淀和荧光激活细胞器分选。这些方法极其精确,但通常需要转染并表达带有亲和标签或荧光团的溶酶体膜蛋白。一种更简单的方法利用亚细胞器的不同密度,这是特定类型细胞器的特征。沿着密度梯度分离细胞器能够进行分级分离,以富集天然状态下的特定细胞器(如溶酶体)。本方案概述了一种优化方法,用于利用含有 Percoll 的连续密度梯度从 HeLa 细胞中富集溶酶体。温和的细胞裂解和提取条件可产生富含功能性和完整溶酶体的致密级分,可在下游分析中进行检测。该方法快速(在收获细胞后不到 2 小时内完成),并且可以很容易地针对其他细胞类型进行扩展和优化。