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非生物胁迫信号转导中的蛋白质-蛋白质相互作用:生化和生物物理表征方法概述。

Protein-Protein Interactions in Abiotic Stress Signaling: An Overview of Biochemical and Biophysical Methods of Characterization.

机构信息

UMR 6553 ECOBIO (Ecosystems-Biodiversity-Evolution), CNRS, Université de Rennes, Brittany, France.

出版信息

Methods Mol Biol. 2023;2642:319-330. doi: 10.1007/978-1-0716-3044-0_17.

Abstract

The identification and characterization of bona fide abiotic stress signaling proteins can occur at different levels of the complete in vivo signaling cascade or network. Knowledge of a particular abiotic stress signaling protein could theoretically lead to the characterization of complete networks through the analysis of unknown proteins that interact with the previously known protein. Such signaling proteins of interest can indeed be experimentally used as bait proteins to catch interacting prey proteins, provided that the association of bait proteins and prey proteins should yield a biochemical or biophysical signal that can be detected. To this end, several biochemical and biophysical techniques are available to provide experimental evidence for specific protein-protein interactions, such as co-immunoprecipitation, bimolecular fluorescence complementation, tandem affinity purification coupled to mass spectrometry, yeast two hybrid, protein microarrays, Förster resonance energy transfer, or fluorescence correlation spectroscopy. This array of methods can be implemented to establish the biochemical reality of putative protein-protein interactions between two proteins of interest or to identify previously unknown partners related to an initially known protein of interest. The ultimate validity of these methods however depends on the in vitro/in vivo nature of the approach and on the heterologous/homologous context of the analysis. This chapter will review the application and success of some classical methods of protein-protein interaction analysis in the field of plant abiotic stress signaling.

摘要

可以在完整的体内信号级联或网络的不同水平上识别和描述真正的非生物胁迫信号蛋白。从理论上讲,对特定非生物胁迫信号蛋白的了解可以通过分析与先前已知蛋白相互作用的未知蛋白来对完整的网络进行特征描述。确实可以将这些感兴趣的信号蛋白用作诱饵蛋白来捕获相互作用的猎物蛋白,前提是诱饵蛋白和猎物蛋白的结合应该产生可以检测到的生化或物理信号。为此,有几种生化和物理技术可用于提供特定蛋白-蛋白相互作用的实验证据,例如共免疫沉淀、双分子荧光互补、串联亲和纯化与质谱联用、酵母双杂交、蛋白微阵列、Förster 共振能量转移或荧光相关光谱。可以实施这些方法组合以确定两个感兴趣蛋白之间假定的蛋白-蛋白相互作用的生化真实性,或鉴定与最初感兴趣的已知蛋白相关的先前未知的伙伴。然而,这些方法的最终有效性取决于该方法的体外/体内性质以及分析的异源/同源背景。本章将回顾植物非生物胁迫信号领域中一些经典蛋白-蛋白相互作用分析方法的应用和成功。

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