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首页> 外文期刊>Plant and Cell Physiology >Reconstitution of Arabidopsis thaliana SUMO Pathways in E. coli: Functional Evaluation of SUMO Machinery Proteins and Mapping of SUMOylation Sites by Mass Spectrometry
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Reconstitution of Arabidopsis thaliana SUMO Pathways in E. coli: Functional Evaluation of SUMO Machinery Proteins and Mapping of SUMOylation Sites by Mass Spectrometry

机译:大肠杆菌中拟南芥SUMO途径的重构:SUMO机械蛋白的功能评估和质谱的SUMO酰化位点图

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摘要

Recent studies have revealed various functions for the small ubiquitin-related modifier (SUMO) in diverse biological phenomena, such as regulation of cell division, DNA repair and transcription, in yeast and animals. In contrast, only a limited number of proteins have been characterized in plants, although plant SUMO proteins are involved in many physiological processes, such as stress responses, regulation of flowering time and defense reactions to pathogen attack. Here, we reconstituted the Arabidopsis thaliana SUMOylation cascade in Escherichia coli. This system is rapid and effective for the evaluation of the SUMOylation of potential SUMO target proteins. We tested the ability of this system to conjugate the Arabidopsis SUMO isoforms, AtSUMO1, 2, 3 and 5, to a model substrate, AtMYB30, which is an Arabidopsis transcription factor. All four SUMO isoforms tested were able to SUMOylate AtMYB30. Furthermore, SUMOy-lation sites of AtMYB30 were characterized by liquid chromatography–tandem mass spectrometry (LC-MS/MS) followed by mutational analysis in combination with this system. Using this reconstituted SUMOylation system, comparisons of SUMOylation patterns among SUMO isoforms can be made, and will provide insights into the SUMO isoform specificity of target modification. The identification of SUMOylation sites enables us to investigate the direct effects of SUMOylation using SUMOylation-defective mutants. This system will be a powerful tool for elucidation of the role of SUMOylation and of the biochemical and structural features of SUMOylated proteins in plants.
机译:最近的研究表明,小泛素相关修饰剂(SUMO)在多种生物学现象中具有多种功能,例如在酵母和动物中调节细胞分裂,DNA修复和转录。相反,尽管植物SUMO蛋白参与许多生理过程,例如胁迫反应,开花时间的调节和对病原体侵袭的防御反应,但在植物中仅表征了有限数量的蛋白质。在这里,我们在大肠杆菌中重构了拟南芥SUMOylation级联。该系统快速有效地用于评估潜在SUMO目标蛋白的SUMOylation。我们测试了该系统将拟南芥SUMO同工型AtSUMO1、2、3和5与模型底物AtMYB30(即拟南芥转录因子)缀合的能力。测试的所有四种SUMO同工型均能够SUMOyated AtMYB30。此外,通过液相色谱-串联质谱(LC-MS / MS),然后结合该系统进行突变分析,对AtMYB30的SUMOy-位点进行了表征。使用此重构的SUMOylation系统,可以对SUMO同工型之间的SUMOylation模式进行比较,并将提供对靶修饰的SUMO同工型特异性的见解。 SUMOylation位点的鉴定使我们能够研究使用SUMOylation缺陷型突变体对SUMOylation的直接影响。该系统将成为阐明SUMOylation的作用以及SUMOylated蛋白在植物中的生化和结构特征的有力工具。

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  • 来源
    《Plant and Cell Physiology》 |2009年第6期|p.1049-1061|共13页
  • 作者单位

    1Department of Bioscience, School of Science and Technology, Kwansei Gakuin University, 2-1 Gakuen, Sanda, 669-1337 Japan 2Nanobiotechnology Research Center, School of Science and Technology, Kwansei Gakuin University, 2-1 Gakuen, Sanda, 669-1337 Japan 3Department of Molecular and Functional Genomics, Center for Integrated Research in Science, Shimane University, Matsue, 690-8504 Japan 4Proteomics Support Unit, Center for Developmental Biology, RIKEN, Kobe, 650-0047 Japan 5Laboratory for Chromatin Dynamics, Center for Developmental Biology, RIKEN, Kobe, 650-0047 Japan;

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