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在活细胞中从分离的单个溶酶体中直接电化学观察糖苷酶活性。

Direct electrochemical observation of glucosidase activity in isolated single lysosomes from a living cell.

机构信息

The State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, 210093 Jiangsu, China.

Department of Medical Laboratory, Imaging, and Radiologic Sciences, College of Allied Health Sciences, Augusta University, Augusta, GA 30912.

出版信息

Proc Natl Acad Sci U S A. 2018 Apr 17;115(16):4087-4092. doi: 10.1073/pnas.1719844115. Epub 2018 Apr 2.

Abstract

The protein activity in individual intracellular compartments in single living cells must be analyzed to obtain an understanding of protein function at subcellular locations. The current methodology for probing activity is often not resolved to the level of an individual compartment, and the results provide an extent of reaction that is averaged from a group of compartments. To address this technological limitation, a single lysosome is sorted from a living cell via electrophoresis into a nanocapillary designed to electrochemically analyze internal solution. The activity of a protein specific to lysosomes, β-glucosidase, is determined by the electrochemical quantification of hydrogen peroxide generated from the reaction with its substrate and the associated enzymes preloaded in the nanocapillary. Sorting and assaying multiple lysosomes from the same cell shows the relative homogeneity of protein activity between different lysosomes, whereas the protein activity in single lysosomes from different cells of the same type is heterogeneous. Thus, this study for the analysis of protein activity within targeted cellular compartments allows direct study of protein function at subcellular resolution and provides unprecedented information about the homogeneity within the lysosomal population of a single cell.

摘要

要了解蛋白质在亚细胞位置的功能,必须分析单个活细胞中各个细胞内区室的蛋白质活性。目前探测活性的方法通常无法精细到单个区室的水平,而且结果提供的是一组区室的平均反应程度。为了解决这一技术限制,通过电泳将单个溶酶体从活细胞中分拣到一个纳米毛细管中,该纳米毛细管旨在通过电化学分析内部溶液来分析其活性。溶酶体特异性蛋白β-葡萄糖苷酶的活性通过与其底物反应生成的过氧化氢的电化学定量以及预先加载在纳米毛细管中的相关酶来确定。对同一个细胞中的多个溶酶体进行分拣和分析表明,不同溶酶体之间的蛋白质活性具有相对均一性,而来自同一类型的不同细胞的单个溶酶体中的蛋白质活性则具有异质性。因此,这项针对靶向细胞区室中蛋白质活性的分析研究允许在亚细胞分辨率下直接研究蛋白质功能,并提供了关于单个细胞中溶酶体群体内同质性的前所未有的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c03/5910846/b5072f54f5f9/pnas.1719844115fig01.jpg

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