Danish-Chinese Centre for Proteases and Cancer, Danish National Research Foundation, Aarhus University, Department of Molecular Biology, Gustav Wieds Vej 10C, DK 8000 Aarhus, Denmark.
Microb Cell Fact. 2010 Apr 30;9:27. doi: 10.1186/1475-2859-9-27.
Recombinant gene expression is among the most important techniques used both in molecular and medical research and in industrial settings. Today, two recombinant expression systems are particularly well represented in the literature reporting on recombinant expression of specific genes. According to searches in the PubMed citation database, during the last 15 years 80% of all recombinant genes reported on in the literature were expressed in either the enterobacterium Escherichia coli or the methylotropic yeast Pichia pastoris. Nevertheless, some eukaryotic proteins are misfolded or inadequately posttranslationally modified in these expression systems. This situation demands identification of other recombinant expression systems that enable the proper expression of the remaining eukaryotic genes. As of now, a single universal system allowing expression of all target genes is still a distant goal. In this light, thorough experimental screening for systems that can yield satisfying quantity and quality of target protein is required. In recent years, a number of new expression systems have been described and used for protein production. Two systems, namely Drosophila melanogaster S2 insect cells and human embryonic kidney 293 (HEK293) cells stably expressing the EBNA-1 gene, show exceptional promise. The time has come to identify a few well-performing systems that will allow us to express, purify, and characterize entire eukaryotic genomes.
重组基因表达是分子和医学研究以及工业领域中最重要的技术之一。如今,在报告特定基因重组表达的文献中,有两种重组表达系统特别常见。根据在 PubMed 引文数据库中的搜索,在过去的 15 年中,文献中报道的所有重组基因中有 80%是在大肠杆菌或甲醇营养型酵母毕赤酵母中表达的。然而,在这些表达系统中,一些真核蛋白会错误折叠或翻译后修饰不足。这种情况要求确定其他能够正确表达其余真核基因的重组表达系统。到目前为止,一个能够表达所有目标基因的通用系统仍然是一个遥远的目标。在这方面,需要对能够产生令人满意的目标蛋白数量和质量的系统进行彻底的实验筛选。近年来,已经描述并使用了许多新的表达系统来生产蛋白质。有两个系统,即黑腹果蝇 S2 昆虫细胞和稳定表达 EBNA-1 基因的人胚肾 293(HEK293)细胞,显示出了特别的前景。现在是时候确定一些表现良好的系统了,这些系统将使我们能够表达、纯化和表征整个真核基因组。