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Construction of a dual-tag system for gene expression, protein affinity purification and fusion protein processing

机译:构建用于基因表达,蛋白亲和纯化和融合蛋白加工的双标签系统

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摘要

An E. coli vector system was constructed which allows the expression of fusion genes via a l-rhamnose-inducible promotor. The corresponding fusion proteins consist of the maltose-binding protein and a His-tag sequence for affinity purification, the Saccharomyces cerevisiae Smt3 protein for protein processing by proteolytic cleavage and the protein of interest. The Smt3 gene was codon-optimized for expression in E. coli. In a second rhamnose-inducible vector, the S. cerevisiae Ulp1 protease gene for processing Smt3 fusion proteins was fused in the same way to maltose-binding protein and His-tag sequence but without the Smt3 gene. The enhanced green fluorescent protein (eGFP) was used as reporter and protein of interest. Both fusion proteins (MalE-6xHis-Smt3-eGFP and MalE-6xHis-Ulp1) were efficiently produced in E. coli and separately purified by amylose resin. After proteolytic cleavage the products were applied to a Ni-NTA column to remove protease and tags. Pure eGFP protein was obtained in the flow-through of the column in a yield of around 35% of the crude cell extract.
机译:构建了大肠杆菌载体系统,该系统允许通过鼠李糖诱导的启动子表达融合基因。相应的融合蛋白由麦芽糖结合蛋白和用于亲和纯化的His-tag序列,用于通过蛋白水解切割进行蛋白加工的酿酒酵母Smt3蛋白和目的蛋白组成。 Smt3基因经过密码子优化,可在大肠杆菌中表达。在第二个鼠李糖诱导型载体中,将用于处理Smt3融合蛋白的酿酒酵母Ulp1蛋白酶基因与麦芽糖结合蛋白和His-tag序列以相同的方式融合,但没有Smt3基因。增强的绿色荧光蛋白(eGFP)被用作报告基因和目的蛋白。两种融合蛋白(MalE-6xHis-Smt3-eGFP和MalE-6xHis-Ulp1)均可在大肠杆菌中高效生产,并分别通过直链淀粉树脂纯化。在蛋白水解切割后,将产物应用于Ni-NTA柱以去除蛋白酶和标签。在柱的流通中获得纯eGFP蛋白,产率约为粗细胞提取物的35%。

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