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Wheat germ-based protein libraries for the functional characterisation of the Arabidopsis E2 ubiquitin conjugating enzymes and the RING-type E3 ubiquitin ligase enzymes

机译:基于小麦胚芽的蛋白质文库,用于表征拟南芥E2泛素结合酶和RING型E3泛素连接酶

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Background Protein ubiquitination is a ubiquitous mechanism in eukaryotes. In Arabidopsis, ubiquitin modification is mainly mediated by two ubiquitin activating enzymes (E1s), 37 ubiquitin conjugating enzymes (E2s), and more than 1300 predicted ubiquitin ligase enzymes (E3s), of which ~470 are RING-type E3s. A large proportion of the RING E3’s gene products have yet to be characterised in vitro, likely because of the laborious work involved in large-scale cDNA cloning and protein expression, purification, and characterisation. In addition, several E2s, which might be necessary for the activity of certain E3 ligases, connot be expressed by Escherichia coli or cultured insect cells and, therefore, remain uncharacterised. Results Using the RIKEN Arabidopsis full-length cDNA library (RAFL) with the ‘split-primer’ PCR method and a wheat germ cell-free system, we established protein libraries of Arabidopsis E2 and RING E3 enzymes. We expressed 35 Arabidopsis E2s including six enzymes that have not been previously expressed, and 204 RING proteins, most of which had not been functionally characterised. Thioester assays using dithiothreitol (DTT) showed DTT-sensitive ubiquitin thioester formation for all E2s expressed. In expression assays of RING proteins, 31 proteins showed high molecular smears, which are probably the result of their functional activity. The activities of another 27 RING proteins were evaluated with AtUBC10 and/or a group of different E2s. All the 27 RING E3s tested showed ubiquitin ligase activity, including 17 RING E3s. Their activities are reported for the first time. Conclusion The wheat germ cell-free system used in our study, which is a eukaryotic expression system and more closely resembles the endogenous expression of plant proteins, is very suitable for expressing Arabidopsis E2s and RING E3s in their functional form. In addition, the protein libraries described here can be used for further understanding E2-E3 specificities and as platforms for protein-protein interaction screening.
机译:背景技术蛋白泛素化是真核生物中的普遍机制。在拟南芥中,泛素修饰主要由两种泛素激活酶(E1),37种泛素结合酶(E2s)和1300多种预测的泛素连接酶(E3s)介导,其中约470种是RING型E3s。 RING E3的大部分基因产物尚未在体外进行鉴定,这可能是由于进行大规模cDNA克隆以及蛋白质表达,纯化和鉴定所付出的辛勤工作。另外,对于某些E3连接酶的活性可能是必需的几种E2,大肠杆菌或培养的昆虫细胞并不表达,因此仍未表征。结果使用RIKEN拟南芥全长cDNA文库(RAFL)和'split-primer'PCR方法和无小麦生殖细胞系统,我们建立了拟南芥E2和RING E3酶的蛋白质文库。我们表达了35种拟南芥E2,包括先前未表达的6种酶和204种RING蛋白,其中大多数尚未进行功能表征。使用二硫苏糖醇(DTT)进行的硫酯测定表明,对于所有表达的E2,DTT敏感的泛素硫酯形成。在RING蛋白的表达分析中,有31种蛋白表现出高分子量涂片,这可能是其功能活性的结果。用AtUBC10和/或一组不同的E2评估了另外27个RING蛋白的活性。测试的所有27个RING E3均显示泛素连接酶活性,包括17个RING E3。他们的活动是第一次报告。结论我们研究中使用的无小麦生殖细胞系统是一个真核表达系统,与植物蛋白的内源表达更相似,非常适合以功能形式表达拟南芥E2和RING E3。此外,此处描述的蛋白质文库可用于进一步了解E2-E3特异性,并可作为蛋白质-蛋白质相互作用筛选的平台。

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