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In planta chemical cross-linking and mass spectrometry analysis of protein structure and interaction in Arabidopsis

机译:在植物中的化学交联和质谱分析拟南芥中蛋白质的结构和相互作用

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摘要

Site-specific chemical cross-linking in combination with mass spectrometry analysis has emerged as a powerful proteomic approach for studying the three-dimensional structure of protein complexes and in mapping protein-protein interactions (PPIs). Building on the success of MS analysis of in vitro cross-linked proteins, which has been widely used to investigate specific interactions of bait proteins and their targets in various organisms, we report a workflow for in vivo chemical cross-linking and MS analysis in a multicellular eukaryote. This approach optimizes the in vivo protein cross-linking conditions in Arabidopsis thaliana, establishes a MudPIT procedure for the enrichment of cross-linked peptides, and develops an integrated software program, exhaustive cross-linked peptides identification tool (ECL), to identify the MS spectra of in planta chemical cross-linked peptides. In total, two pairs of in vivo cross-linked peptides of high confidence have been identified from two independent biological replicates. This work demarks the beginning of an alternative proteomic approach in the study of in vivo protein tertiary structure and PPIs in multicellular eukaryotes.
机译:特定位置的化学交联与质谱分析相结合已成为一种强大的蛋白质组学方法,用于研究蛋白质复合物的三维结构并绘制蛋白质-蛋白质相互作用(PPI)。基于体外交联蛋白的质谱分析成功的基础(已广泛用于研究诱饵蛋白及其靶标在各种生物中的特异性相互作用),我们报告了体内化学交联和质谱分析的工作流程。多细胞真核生物。这种方法优化了拟南芥中的体内蛋白质交联条件,建立了MudPIT程序来丰富交联肽,并开发了一个集成的软件程序,即详尽的交联肽鉴定工具(ECL),以鉴定MS植物内化学交联肽的光谱总体上,已经从两个独立的生物学重复中鉴定出两对高可信度的体内交联肽。这项工作标志着蛋白质组学替代方法在多细胞真核生物体内蛋白质三级结构和PPI研究中的开始。

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