首页> 外文期刊>Journal of the American Chemical Society >Chemical Synthesis of Atomically Tailored SUMO E2 Conjugating Enzymes for the Formation of Covalently Linked SUMO-E2-E3 Ligase Ternary Complexes
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Chemical Synthesis of Atomically Tailored SUMO E2 Conjugating Enzymes for the Formation of Covalently Linked SUMO-E2-E3 Ligase Ternary Complexes

机译:原子定制SUMO E2共轭酶的化学合成,用于形成共价连接的SUMO-E2-E3连接酶三元复合物

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E2 conjugating enzymes are the key catalytic actors in the transfer of ubiquitin, SUMO, and other ubiquitin-like modifiers to their substrate proteins. Their high rates of transfer and promiscuous binding complicate studies of their interactions and binding partners. To access specific, covalently linked conjugates of the SUMO E2 conjugating enzyme Ubc9, we prepared synthetic variants bearing site-specific non-native modifications including the following: (1) replacement of Cys93 to 2,3-diaminopropionic acid to form the amide-linked stable E2-SUMO conjugate, which is known to have high affinity for E3 ligases; (2) a photoreactive group (diazirine) to trap E3 ligases upon UV irradiation; and (3) an N-terminal biotin for purification and detection. To construct these Ubc9 variants in a flexible, convergent manner, we combined the three leading methods: native chemical ligation (NCL), alpha-ketoacid-hydroxylamine (KAHA) ligation, and serine/threonine ligation (STL). Using the synthetic proteins, we demonstrated the selective formation of Ubc9-SUMO conjugates and the trapping of an E3 ligase (RanBP2) to form the stable, covalently linked SUMO1-Ubc9-RanBP2 ternary complex. The powerful combination of ligation methods-which minimizes challenges of functional group manipulations-will enable chemical probes based on E2 conjugating enzymes to trap E3 ligases and facilitate the synthesis of other protein classes.
机译:E2共轭酶是泛素,SUMO和其他泛素样修饰剂向其底物蛋白转移的关键催化因子。它们的高转移率和混杂的结合使它们的相互作用和结合伴侣的研究复杂化。为了获得SUMO E2共轭酶Ubc9的特异性,共价连接的缀合物,我们制备了带有位点特异性非天然修饰的合成变体,包括以下内容:(1)将Cys93替换为2,3-二氨基丙酸以形成酰胺连接的稳定的E2-SUMO偶联物,已知对E3连接酶具有高亲和力; (2)一个光反应性基团(重氮基),可在紫外线照射下捕获E3连接酶; (3)用于纯化和检测的N末端生物素。为了以灵活,收敛的方式构建这些Ubc9变体,我们结合了三种主要方法:天然化学连接(NCL),α-酮酸-羟胺(KAHA)连接和丝氨酸/苏氨酸连接(STL)。使用合成蛋白,我们证明了Ubc9-SUMO共轭物的选择性形成和E3连接酶(RanBP2)的捕获,以形成稳定的,共价连接的SUMO1-Ubc9-RanBP2三元复合物。连接方法的强大组合-最大限度地减少了功能基团操作的挑战-将使基于E2共轭酶的化学探针能够捕获E3连接酶并促进其他蛋白质类别的合成。

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