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用丁香霉素A抑制蛋白酶体后鉴定出的蛋白质丰度变化和泛素化靶点。

Protein abundance changes and ubiquitylation targets identified after inhibition of the proteasome with syringolin A.

作者信息

Svozil Julia, Hirsch-Hoffmann Matthias, Dudler Robert, Gruissem Wilhelm, Baerenfaller Katja

机构信息

From the ‡Department of Biology, Universitaetstrasse 2, ETH Zurich, CH-8092 Zurich, Switzerland;

§Institute of Plant Biology, Zollikerstrasse 107, University of Zurich, CH-8008 Zurich, Switzerland.

出版信息

Mol Cell Proteomics. 2014 Jun;13(6):1523-36. doi: 10.1074/mcp.M113.036269. Epub 2014 Apr 13.

Abstract

As proteins are the main effectors inside cells, their levels need to be tightly regulated. This is partly achieved by specific protein degradation via the Ubiquitin-26S proteasome system (UPS). In plants, an exceptionally high number of proteins are involved in Ubiquitin-26S proteasome system-mediated protein degradation and it is known to regulate most, if not all, important cellular processes. Here, we investigated the response to the inhibition of the proteasome at the protein level treating leaves with the specific inhibitor Syringolin A (SylA) in a daytime specific manner and found 109 accumulated and 140 decreased proteins. The patterns of protein level changes indicate that the accumulating proteins cause proteotoxic stress that triggers various responses. Comparing protein level changes in SylA treated with those in a transgenic line over-expressing a mutated ubiquitin unable to form polyubiquitylated proteins produced little overlap pointing to different response pathways. To distinguish between direct and indirect targets of the UPS we also enriched and identified ubiquitylated proteins after inhibition of the proteasome, revealing a total of 1791 ubiquitylated proteins in leaves and roots and 1209 that were uniquely identified in our study. The comparison of the ubiquitylated proteins with those changing in abundance after SylA-mediated inhibition of the proteasome confirmed the complexity of the response and revealed that some proteins are regulated both at transcriptional and post-transcriptional level. For the ubiquitylated proteins that accumulate in the cytoplasm but are targeted to the plastid or the mitochondrion, we often found peptides in their target sequences, demonstrating that the UPS is involved in controlling organellar protein levels. Attempts to identify the sites of ubiquitylation revealed that the specific properties of this post-translational modification can lead to incorrect peptide spectrum assignments in complex peptide mixtures in which only a small fraction of peptides is expected to carry the ubiquitin footprint. This was confirmed with measurements of synthetically produced peptides and calculating the similarities between the different spectra.

摘要

由于蛋白质是细胞内的主要效应分子,其水平需要受到严格调控。这部分是通过泛素-26S蛋白酶体系统(UPS)介导的特异性蛋白质降解来实现的。在植物中,有大量蛋白质参与泛素-26S蛋白酶体系统介导的蛋白质降解,并且已知该系统可调控大多数(如果不是全部)重要的细胞过程。在此,我们以白天特定的方式用特异性抑制剂丁香霉素A(SylA)处理叶片,在蛋白质水平上研究了对蛋白酶体抑制的反应,发现有109种蛋白质积累,140种蛋白质减少。蛋白质水平变化模式表明,积累的蛋白质会引发蛋白毒性应激,从而触发各种反应。将SylA处理后的蛋白质水平变化与过表达无法形成多聚泛素化蛋白质的突变泛素的转基因系中的变化进行比较,发现几乎没有重叠,这表明存在不同的反应途径。为了区分UPS的直接和间接靶标,我们还在蛋白酶体抑制后富集并鉴定了泛素化蛋白质,在叶片和根中总共鉴定出1791种泛素化蛋白质,其中有1209种是我们研究中独特鉴定出的。将泛素化蛋白质与SylA介导的蛋白酶体抑制后丰度发生变化的蛋白质进行比较,证实了反应的复杂性,并揭示了一些蛋白质在转录和转录后水平均受到调控。对于在细胞质中积累但靶向质体或线粒体的泛素化蛋白质,我们经常在其靶序列中发现肽段,这表明UPS参与控制细胞器蛋白质水平。尝试鉴定泛素化位点发现,这种翻译后修饰的特殊性质可能导致复杂肽混合物中肽谱分配错误,在这种混合物中只有一小部分肽预计带有泛素标记。通过对合成肽的测量以及计算不同谱之间的相似性证实了这一点。

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