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基于 TurboID 的邻近标记:一种解析植物中蛋白质-蛋白质相互作用的方法。

TurboID-Based Proximity Labeling: A Method to Decipher Protein-Protein Interactions in Plants.

机构信息

Department of Plant Biology and The Genome Center, College of Biological Sciences, University of California, Davis, Davis, CA, USA.

State Key Laboratory of Plant Environmental Resilience and Ministry of Agriculture Key Laboratory of Soil Microbiology, College of Biological Sciences, China Agricultural University, Beijing, China.

出版信息

Methods Mol Biol. 2024;2724:257-272. doi: 10.1007/978-1-0716-3485-1_19.

Abstract

Proteins form complex networks through interaction to drive biological processes. Thus, dissecting protein-protein interactions (PPIs) is essential for interpreting cellular processes. To overcome the drawbacks of traditional approaches for analyzing PPIs, enzyme-catalyzed proximity labeling (PL) techniques based on peroxidases or biotin ligases have been developed and successfully utilized in mammalian systems. However, the use of toxic HO in peroxidase-based PL, the requirement of long incubation time (16-24 h), and higher incubation temperature (37 °C) with biotin in BioID-based PL significantly restricted their applications in plants. TurboID-based PL, a recently developed approach, circumvents the limitations of these methods by providing rapid PL of proteins under room temperature. We recently optimized the use of TurboID-based PL in plants and demonstrated that it performs better than BioID in labeling endogenous proteins. Here, we describe a step-by-step protocol for TurboID-based PL in studying PPIs in planta, including Agrobacterium-based transient expression of proteins, biotin treatment, protein extraction, removal of free biotin, quantification, and enrichment of the biotinylated proteins by affinity purification. We describe the PL using plant viral immune receptor N, which belongs to the nucleotide-binding leucine-rich repeat (NLR) class of immune receptors, as a model. The method described could be easily adapted to study PPI networks of other proteins in Nicotiana benthamiana and provides valuable information for future application of TurboID-based PL in other plant species.

摘要

蛋白质通过相互作用形成复杂的网络,从而驱动生物过程。因此,剖析蛋白质-蛋白质相互作用(PPIs)对于解释细胞过程至关重要。为了克服传统分析 PPIs 方法的缺点,基于过氧化物酶或生物素连接酶的酶催化邻近标记(PL)技术已被开发并成功应用于哺乳动物系统。然而,过氧化物酶基 PL 中 HO 的毒性、生物素基 BioID 中 16-24 小时的长孵育时间和 37°C 的高孵育温度显著限制了它们在植物中的应用。TurboID 基 PL 是一种最近开发的方法,通过在室温下快速标记蛋白质,规避了这些方法的局限性。我们最近优化了 TurboID 基 PL 在植物中的应用,并证明它在标记内源性蛋白质方面优于 BioID。在这里,我们描述了在植物中研究 PPIs 的基于 TurboID 的 PL 的逐步方案,包括基于农杆菌的蛋白质瞬时表达、生物素处理、蛋白质提取、游离生物素的去除、定量和亲和纯化富集生物素化蛋白质。我们以植物病毒免疫受体 N 为例,描述了 PL 的使用,该受体属于核苷酸结合富含亮氨酸重复(NLR)类免疫受体。所描述的方法可以很容易地应用于在本氏烟中研究其他蛋白质的 PPI 网络,并为未来在其他植物物种中基于 TurboID 的 PL 的应用提供有价值的信息。

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