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从植物材料中分离应激颗粒

The Isolation of Stress Granules From Plant Material.

作者信息

Kosmacz Monika, Skirycz Aleksandra

机构信息

Max Planck Institute of Molecular Plant Physiology, Golm, Germany.

出版信息

Curr Protoc Plant Biol. 2020 Sep;5(3):e20118. doi: 10.1002/cppb.20118.

Abstract

Stress granules (SGs) are ubiquitous nonmembrane-bound assemblies of protein and mRNA formed under stress conditions associated with stalled translation. SGs are evolutionarily conserved across eukaryotes. The canonical function of SGs is to selectively protect mRNAs and proteins from unfolding and prevent degradation induced by diverse environmental stresses. Moreover, sequestration into SGs provides an elegant way to regulate protein activities. Disassembly of SGs upon stress recovery is accompanied by the reactivation of protein translation and protein activities. The regulatory importance of SGs has been corroborated by recent studies describing the multiomics analysis of the composition of SGs from yeast, animal, and plant cells. Herein, we describe an isolation protocol of SGs that allows for the identification of proteins, mRNA, and metabolites sequestered into SG cores. Furthermore, the described protocols can be used to isolate other SG-like foci. © 2020 Wiley Periodicals LLC. Basic Protocol 1: Preparation of SG-enriched fraction from plant material Basic Protocol 2: Affinity purification to isolate SGs Basic Protocol 3: Simultaneous extraction of proteins and metabolites from affinity-purified beads Basic Protocol 4: Protein digestion on affinity-purified beads Basic Protocol 5: Data analysis.

摘要

应激颗粒(SGs)是在与翻译停滞相关的应激条件下形成的普遍存在的蛋白质和mRNA的无膜结合聚集体。SGs在真核生物中具有进化保守性。SGs的典型功能是选择性保护mRNA和蛋白质不发生解折叠,并防止由各种环境应激诱导的降解。此外,隔离到SGs中提供了一种调节蛋白质活性的巧妙方式。应激恢复时SGs的解体伴随着蛋白质翻译和蛋白质活性的重新激活。最近描述对来自酵母、动物和植物细胞的SGs组成进行多组学分析的研究证实了SGs的调节重要性。在此,我们描述了一种SGs的分离方案,该方案允许鉴定隔离到SG核心中的蛋白质、mRNA和代谢物。此外,所描述的方案可用于分离其他类似SG的聚集体。©2020威利期刊公司。基本方案1:从植物材料制备富含SG的组分 基本方案2:亲和纯化以分离SGs 基本方案3:从亲和纯化的珠子中同时提取蛋白质和代谢物 基本方案4:对亲和纯化的珠子进行蛋白质消化 基本方案5:数据分析。

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