Department of Biochemistry and Molecular Biology, The Institute for Structural Biology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
EMBO J. 2012 Jan 18;31(2):378-90. doi: 10.1038/emboj.2011.397. Epub 2011 Nov 11.
Covalent modification of proteins with ubiquitin (Ub) is widely implicated in the control of protein function and fate. Over 100 deubiquitylating enzymes rapidly reverse this modification, posing challenges to the biochemical and biophysical characterization of ubiquitylated proteins. We circumvented this limitation with a synthetic biology approach of reconstructing the entire eukaryotic Ub cascade in bacteria. Co-expression of affinity-tagged substrates and Ub with E1, E2 and E3 enzymes allows efficient purification of ubiquitylated proteins in milligram quantity. Contrary to in-vitro assays that lead to spurious modification of several lysine residues of Rpn10 (regulatory proteasomal non-ATPase subunit), the reconstituted system faithfully recapitulates its monoubiquitylation on lysine 84 that is observed in vivo. Mass spectrometry revealed the ubiquitylation sites on the Mind bomb E3 ligase and the Ub receptors Rpn10 and Vps9. Förster resonance energy transfer (FRET) analyses of ubiquitylated Vps9 purified from bacteria revealed that although ubiquitylation occurs on the Vps9-GEF domain, it does not affect the guanine nucleotide exchanging factor (GEF) activity in vitro. Finally, we demonstrated that ubiquitylated Vps9 assumes a closed structure, which blocks additional Ub binding. Characterization of several ubiquitylated proteins demonstrated the integrity, specificity and fidelity of the system, and revealed new biological findings.
蛋白质与泛素(Ub)的共价修饰广泛涉及蛋白质功能和命运的控制。超过 100 种去泛素化酶可快速逆转这种修饰,这给泛素化蛋白质的生化和生物物理特性分析带来了挑战。我们通过在细菌中重建整个真核 Ub 级联的合成生物学方法克服了这一限制。亲和标签标记的底物和 Ub 与 E1、E2 和 E3 酶的共表达允许在毫克级数量上有效纯化泛素化蛋白质。与导致 Rpn10(调节蛋白酶体非 ATP 酶亚基)几个赖氨酸残基发生虚假修饰的体外测定相反,重建系统忠实地再现了其在体内观察到的赖氨酸 84 上的单泛素化。质谱分析揭示了 Mind bomb E3 连接酶和 Ub 受体 Rpn10 和 Vps9 的泛素化位点。从细菌中纯化的泛素化 Vps9 的荧光共振能量转移(FRET)分析表明,尽管泛素化发生在 Vps9-GEF 结构域上,但它不会影响体外鸟嘌呤核苷酸交换因子(GEF)活性。最后,我们证明泛素化的 Vps9 呈现封闭结构,从而阻止了其他 Ub 的结合。对几种泛素化蛋白质的特性分析证明了该系统的完整性、特异性和保真度,并揭示了新的生物学发现。