Hughes Stephen R, Sterner David E, Bischoff Kenneth M, Hector Ronald E, Dowd Patrick F, Qureshi Nasib, Bang Sookie S, Grynaviski Nicole, Chakrabarty Tania, Johnson Eric T, Dien Bruce S, Mertens Jeffrey A, Caughey Robert J, Liu Siqing, Butt Tauseef R, LaBaer Joshua, Cotta Michael A, Rich Joseph O
United States Department of Agriculture (USDA), Agricultural Research Service (ARS), National Center for Agricultural Utilization Research (NCAUR), Peoria, IL 61604, USA.
Plasmid. 2009 Jan;61(1):22-38. doi: 10.1016/j.plasmid.2008.09.001. Epub 2008 Oct 26.
A three-plasmid yeast expression system utilizing the portable small ubiquitin-like modifier (SUMO) vector set combined with the efficient endogenous yeast protease Ulp1 was developed for production of large amounts of soluble functional protein in Saccharomyces cerevisiae. Each vector has a different selectable marker (URA, TRP, or LEU), and the system provides high expression levels of three different proteins simultaneously. This system was integrated into the protocols on a fully automated plasmid-based robotic platform to screen engineered strains of S. cerevisiae for improved growth on xylose. First, a novel PCR assembly strategy was used to clone a xylose isomerase (XI) gene into the URA-selectable SUMO vector and the plasmid was placed into the S. cerevisiae INVSc1 strain to give the strain designated INVSc1-XI. Second, amino acid scanning mutagenesis was used to generate a library of mutagenized genes encoding the bioinsecticidal peptide lycotoxin-1 (Lyt-1) and the library was cloned into the TRP-selectable SUMO vector and placed into INVSc1-XI to give the strain designated INVSc1-XI-Lyt-1. Third, the Yersinia pestis xylulokinase gene was cloned into the LEU-selectable SUMO vector and placed into the INVSc1-XI-Lyt-1 yeast. Yeast strains expressing XI and xylulokinase with or without Lyt-1 showed improved growth on xylose compared to INVSc1-XI yeast.
开发了一种三质粒酵母表达系统,该系统利用便携式小泛素样修饰物(SUMO)载体组并结合高效的内源性酵母蛋白酶Ulp1,用于在酿酒酵母中大量生产可溶性功能蛋白。每个载体都有不同的选择标记(URA、TRP或LEU),该系统可同时提供三种不同蛋白质的高表达水平。该系统被整合到基于全自动质粒的机器人平台的实验方案中,以筛选酿酒酵母工程菌株在木糖上的生长改善情况。首先,采用一种新颖的PCR组装策略将木糖异构酶(XI)基因克隆到URA选择的SUMO载体中,并将该质粒导入酿酒酵母INVSc1菌株,得到命名为INVSc1-XI的菌株。其次,使用氨基酸扫描诱变产生编码生物杀虫肽lycotoxin-1(Lyt-1)的诱变基因文库,该文库被克隆到TRP选择的SUMO载体中,并导入INVSc1-XI,得到命名为INVSc1-XI-Lyt-1的菌株。第三,将鼠疫耶尔森氏菌木酮糖激酶基因克隆到LEU选择的SUMO载体中,并导入INVSc1-XI-Lyt-1酵母中。与INVSc1-XI酵母相比,表达XI和木酮糖激酶(有或没有Lyt-1)的酵母菌株在木糖上的生长有所改善。