Levin-Kravets Olga, Keren-Kaplan Tal, Attali Ilan, Sharon Itai, Tanner Neta, Shapira Dar, Rathi Ritu, Persaud Avinash, Shohat Noa, Shusterman Anna, Prag Gali
Department of Biochemistry and Molecular Biology, Institute of Structural Biology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.
Methods Mol Biol. 2018;1844:155-166. doi: 10.1007/978-1-4939-8706-1_11.
Ubiquitylation is an eukaryotic signal that regulates most cellular pathways. However, four major hurdles pose challenges to study ubiquitylation: (1) high redundancy between ubiquitin (Ub) cascades, (2) ubiquitylation is tightly regulated in the cell, (3) the transient nature of the Ub signal, and (4) difficulties to purify functional ubiquitylation apparatus for in vitro assay. Here, we present systems that express functional Ub cascades in E. coli, which lacks deubiquitylases, Ub-dependent degradations, and control mechanisms for ubiquitylation. Therefore, expression of an ubiquitylation cascade results in the accumulation of stable ubiquitylated protein that can be genetically selected or purified, thus circumventing the above challenges. Co-expression of split antibiotic resistance protein fragments tethered to Ub and ubiquitylation targets along with ubiquitylation enzymes (E1, E2, and E3) gives rise to bacterial growth on selective media. We show that ubiquitylation rate is highly correlated with growth efficiency. Hence, genetic libraries and simple manipulations in the selection system facilitate the identification and characterization of components and interfaces along Ub cascades. The bacterial expression system also facilitates the detection of ubiquitylated proteins. Furthermore, the expression system allows affinity chromatography-based purification of milligram quantities of ubiquitylated proteins for downstream biochemical, biophysical, and structural studies.
泛素化是一种调节大多数细胞通路的真核信号。然而,研究泛素化面临四个主要障碍:(1)泛素(Ub)级联反应之间高度冗余;(2)泛素化在细胞中受到严格调控;(3)Ub信号的短暂性;(4)纯化用于体外检测的功能性泛素化装置存在困难。在此,我们展示了在缺乏去泛素化酶、Ub依赖性降解以及泛素化控制机制的大肠杆菌中表达功能性Ub级联反应的系统。因此,泛素化级联反应的表达会导致稳定的泛素化蛋白积累,这些蛋白可以通过遗传筛选或纯化得到,从而克服了上述挑战。将与Ub和泛素化靶标相连的分裂抗生素抗性蛋白片段与泛素化酶(E1、E2和E3)共表达,可使细菌在选择性培养基上生长。我们表明,泛素化速率与生长效率高度相关。因此,选择系统中的基因文库和简单操作有助于鉴定和表征Ub级联反应中的组分和界面。该细菌表达系统还便于检测泛素化蛋白。此外,该表达系统允许基于亲和层析纯化毫克量的泛素化蛋白,用于下游的生化、生物物理和结构研究。