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基于荧光成像的肌动蛋白束分析

Fluorescence Imaging-based Actin Bundling Assay.

作者信息

Gasilina Anjelika, Randazzo Paul A

机构信息

Laboratory of Cellular and Molecular Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Bio Protoc. 2022 Sep 20;12(18). doi: 10.21769/BioProtoc.4518.

Abstract

Understanding the molecular and structural mechanisms that govern the assembly and organization of higher-order actin architecture requires the use of actin binding and bundling assays. Crosslinking of actin filaments into bundles can be monitored via several techniques, including negative staining/electron microscopy, low-speed co-sedimentation assay/SDS-PAGE, and fluorescence staining/confocal microscopy. We and others have previously characterized the N-BAR domain of ASAP1, an ADP-ribosylation factor GTPase-activating protein, as an actin-bundling module; we further identified key lysine residues responsible for actin cross-linking. Here, we use the ASAP1 BAR domain as an example and describe a detailed procedure for observing the actin bundle formation by confocal microscopy. This protocol requires small reaction volumes and takes advantage of bright commercially available fluorescent phalloidins, making it an ideal choice for medium-throughput screening of mutants or domain truncations in their ability to bundle actin. Graphical abstract.

摘要

要了解控制高阶肌动蛋白结构组装和组织的分子和结构机制,需要使用肌动蛋白结合和捆绑分析方法。肌动蛋白丝交联成束可通过多种技术进行监测,包括负染色/电子显微镜、低速共沉降分析/SDS-PAGE以及荧光染色/共聚焦显微镜。我们和其他人之前已将ASAP1(一种ADP核糖基化因子GTP酶激活蛋白)的N-BAR结构域表征为肌动蛋白捆绑模块;我们进一步确定了负责肌动蛋白交联的关键赖氨酸残基。在此,我们以ASAP1 BAR结构域为例,描述通过共聚焦显微镜观察肌动蛋白束形成的详细步骤。该方案所需反应体积小,并利用了市售的明亮荧光鬼笔环肽,使其成为对突变体或结构域截短体捆绑肌动蛋白能力进行中通量筛选的理想选择。图形摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0393/9550346/6735cc273f20/BioProtoc-12-18-4518-ga001.jpg

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