Automated Quantification of Subcellular Particles in Myogenic Progenitors.

Current Protocols Pub Date : 2021-12-01 DOI:10.1002/cpz1.325
Romina L Filippelli, Amr Omer, Shulei Li, Chloë van Oostende-Triplet, Imed E Gallouzi, Natasha C Chang
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引用次数: 1

Abstract

Fluorescence microscopy is a powerful tool enabling the visualization of protein localization within cells. In this article, we outline an automated and non-biased way to detect and quantify subcellular particles using immunocytochemistry, fluorescence microscopy, and the program CellProfiler. We discuss the examination of two types of subcellular particles: messenger ribonucleoprotein (mRNP) granules, namely processing bodies and stress granules, and autophagosomes. Fluorescent microscopy Z-stacks are acquired and deconvolved, and maximum intensity images are generated. The number of subcellular particles per cell is then quantified using the described CellProfiler pipeline. We also explain how to isolate primary myoblast progenitor cells from mice, which were used to obtain the presented results. Last, we discuss the critical parameters to be considered for each of these techniques. Both mRNP granules and autophagosomes play important roles in sequestering intracellular cargo, such as messenger RNAs and RNA-binding proteins for mRNP granules and cytoplasmic waste for autophagosomes. The methods outlined in this article are widely applicable for studies relating to subcellular particle formation, localization, and flux during homeostasis, following stimuli, and during disease. © 2021 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Immunofluorescence microscopy of messenger ribonucleoprotein granules in primary myoblasts Alternate Protocol: Immunofluorescence microscopy of autophagosomes in primary myoblasts Support Protocol: Isolation of primary myoblasts from mice Basic Protocol 2: Automated quantification of subcellular particles.

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肌源性祖细胞亚细胞颗粒的自动定量分析。
荧光显微镜是一种强大的工具,可以可视化细胞内的蛋白质定位。在本文中,我们概述了一种使用免疫细胞化学、荧光显微镜和CellProfiler程序来检测和量化亚细胞颗粒的自动化和无偏差的方法。我们讨论了两种亚细胞颗粒的检测:信使核糖核蛋白(mRNP)颗粒,即加工体和应激颗粒,以及自噬体。荧光显微镜的z堆栈获得和反卷积,并产生最大强度的图像。然后使用所描述的CellProfiler管道对每个细胞的亚细胞颗粒数量进行量化。我们还解释了如何从小鼠中分离成肌细胞祖细胞,以获得本研究的结果。最后,我们将讨论每种技术需要考虑的关键参数。mRNP颗粒和自噬体在隔离细胞内货物方面都发挥着重要作用,例如mRNP颗粒的信使rna和rna结合蛋白以及自噬体的细胞质废物。本文概述的方法广泛适用于与亚细胞颗粒形成、定位和在稳态、刺激后和疾病期间的通量有关的研究。©2021作者。由Wiley期刊有限责任公司发表的当前方案。基本方案1:原代成肌细胞信使核糖核蛋白颗粒的免疫荧光显微镜。替代方案:原代成肌细胞自噬体的免疫荧光显微镜。支持方案:从小鼠中分离原代成肌细胞。基本方案2:亚细胞颗粒的自动定量。
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