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秀丽隐杆线虫排泄管作为单细胞内细胞腔形态发生和体内极化膜生物发生的模型:通过绿色荧光蛋白融合标记、RNA干扰相互作用筛选和成像

The C. elegans Excretory Canal as a Model for Intracellular Lumen Morphogenesis and In Vivo Polarized Membrane Biogenesis in a Single Cell: labeling by GFP-fusions, RNAi Interaction Screen and Imaging.

作者信息

Zhang Nan, Membreno Edward, Raj Susan, Zhang Hongjie, Khan Liakot A, Gobel Verena

机构信息

Mucosal Immunology and Biology Research Center, Developmental Biology and Genetics Core, Massachusetts General Hospital for Children, Harvard Medical School; College of Life Sciences, Jilin University.

Mucosal Immunology and Biology Research Center, Developmental Biology and Genetics Core, Massachusetts General Hospital for Children, Harvard Medical School.

出版信息

J Vis Exp. 2017 Oct 3(128):56101. doi: 10.3791/56101.

Abstract

The four C. elegans excretory canals are narrow tubes extended through the length of the animal from a single cell, with almost equally far extended intracellular endotubes that build and stabilize the lumen with a membrane and submembraneous cytoskeleton of apical character. The excretory cell expands its length approximately 2,000 times to generate these canals, making this model unique for the in vivo assessment of de novo polarized membrane biogenesis, intracellular lumen morphogenesis and unicellular tubulogenesis. The protocol presented here shows how to combine standard labeling, gain- and loss-of-function genetic or RNA interference (RNAi)-, and microscopic approaches to use this model to visually dissect and functionally analyze these processes on a molecular level. As an example of a labeling approach, the protocol outlines the generation of transgenic animals with fluorescent fusion proteins for live analysis of tubulogenesis. As an example of a genetic approach, it highlights key points of a visual RNAi-based interaction screen designed to modify a gain-of-function cystic canal phenotype. The specific methods described are how to: label and visualize the canals by expressing fluorescent proteins; construct a targeted RNAi library and strategize RNAi screening for the molecular analysis of canal morphogenesis; visually assess modifications of canal phenotypes; score them by dissecting fluorescence microscopy; characterize subcellular canal components at higher resolution by confocal microscopy; and quantify visual parameters. The approach is useful for the investigator who is interested in taking advantage of the C. elegans excretory canal for identifying and characterizing genes involved in the phylogenetically conserved processes of intracellular lumen and unicellular tube morphogenesis.

摘要

秀丽隐杆线虫的四条排泄管是由单个细胞延伸贯穿动物全身的细管,具有几乎等长延伸的细胞内内膜管,这些内膜管用具有顶端特征的膜和膜下细胞骨架构建并稳定管腔。排泄细胞将其长度扩展约2000倍以生成这些管道,这使得该模型对于从头极化膜生物发生、细胞内腔形态发生和单细胞管状发生的体内评估具有独特性。本文介绍的方案展示了如何结合标准标记、功能获得和功能丧失遗传学或RNA干扰(RNAi)以及显微镜方法,利用该模型在分子水平上直观地剖析和功能分析这些过程。作为标记方法的一个示例,该方案概述了用于管状发生实时分析的带有荧光融合蛋白的转基因动物的生成。作为遗传方法的一个示例,它突出了基于视觉RNAi的相互作用筛选的关键点,该筛选旨在修饰功能获得性囊性管表型。所描述的具体方法包括:通过表达荧光蛋白标记并可视化管道;构建靶向RNAi文库并制定RNAi筛选策略以进行管形态发生的分子分析;直观评估管表型的修饰;通过解剖荧光显微镜对其进行评分;通过共聚焦显微镜以更高分辨率表征亚细胞管成分;以及量化视觉参数。该方法对于有兴趣利用秀丽隐杆线虫排泄管来鉴定和表征参与细胞内腔和单细胞管形态发生的系统发育保守过程的基因的研究人员很有用。

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