Halo-RPD: searching for RNA-binding protein targets in plants.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
A O Shamustakimova
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引用次数: 0

Abstract

Study of RNA-protein interactions and identification of RNA targets are among the key aspects of understanding RNA biology. Currently, various methods are available to investigate these interactions with, RNA immunoprecipitation (RIP) being the most common. The search for RNA targets has largely been conducted using antibodies to an endogenous protein or to GFP-tag directly. Having to be dependent on the expression level of the target protein and having to spend time selecting highly specific antibodies make immunoprecipitation complicated. Expression of the GFP-fused protein can lead to cytotoxicity and, consequently, to improper recognition or degradation of the chimeric protein. Over the past few years, multifunctional tags have been developed. SNAP-tag and HaloTag allow the target protein to be studied from different perspectives. Labeling of the fusion protein with custom-made fluorescent dyes makes it possible to study protein expression and to localize it in the cell or the whole organism. A high-affinity substrate has been created to allow covalent binding by chimeric proteins, minimizing protein loss during protein isolation. In this paper, a HaloTag-based method, which we called Halo-RPD (HaloTag RNA PullDown), is presented. The proposed protocol uses plants with stable fusion protein expression and Magne® HaloTag® magnetic beads to capture RNA-protein complexes directly from the cytoplasmic lysate of transgenic Arabidopsis thaliana plants. The key stages described in the paper are as follows: (1) preparation of the magnetic beads; (2) tissue homogenization and collection of control samples; (3) precipitation and wash of RNA-protein complexes; (4) evaluation of protein binding efficiency; (5) RNA isolation; (6) analysis of the RNA obtained. Recommendations for better NGS assay designs are provided.

Halo-RPD:寻找植物中的 RNA 结合蛋白靶标。
研究 RNA 蛋白相互作用和鉴定 RNA 靶标是了解 RNA 生物学的关键环节之一。目前,有多种方法可用于研究这些相互作用,其中最常见的是 RNA 免疫沉淀(RIP)。寻找 RNA 靶标主要使用内源蛋白抗体或直接使用 GFP 标记的抗体。由于必须依赖于目标蛋白的表达水平,而且必须花时间选择高度特异性的抗体,这使得免疫沉淀变得复杂。表达融合了 GFP 的蛋白质可能会导致细胞毒性,进而导致嵌合蛋白被错误识别或降解。在过去几年中,多功能标签应运而生。SNAP 标签和 HaloTag 可以从不同角度研究目标蛋白质。用定制的荧光染料标记融合蛋白,可以研究蛋白质的表达,并确定其在细胞或整个生物体中的位置。为了使嵌合蛋白能够共价结合,我们制作了一种高亲和性底物,以最大限度地减少蛋白质分离过程中的蛋白质损失。本文介绍了一种基于 HaloTag 的方法,我们称之为 Halo-RPD(HaloTag RNA PullDown)。该方法利用稳定表达融合蛋白的植物和 Magne® HaloTag® 磁珠,直接从转基因拟南芥植物的细胞质裂解液中捕获 RNA 蛋白复合物。论文中描述的关键步骤如下:(1)制备磁珠;(2)组织匀浆和收集对照样本;(3)沉淀和洗涤 RNA 蛋白复合物;(4)评估蛋白质结合效率;(5)分离 RNA;(6)分析获得的 RNA。为更好的 NGS 检测设计提供了建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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