Busso Didier, Kim Rosalind, Kim Sung-Hou
Department of Chemistry, University of California, Berkeley, CA 94720-5230, USA.
J Struct Funct Genomics. 2004;5(1-2):69-74. doi: 10.1023/B:JSFG.0000029197.44728.c5.
For structural and functional genomics programs, new high-throughput methods to characterize well-expressing and highly soluble proteins are essential. A faster and more convenient approach to screen expression conditions of recombinant proteins compared to classical in vivo systems is the Escherichia coli cell-free expression system. Here, we describe a rapid procedure to screen for expression and solubility of recombinant proteins using an E. coli cell-free extract. The results presented cover 24 open reading frames of unknown function from different micro-organisms. In order to screen different variables that may interfere with solubility, we expressed the recombinant proteins with a histidine6 tag, either N-terminal or C-terminal at two temperatures (25 degrees C and 30 degrees C). The identification of recombinant proteins is performed by the dot blot procedure using an anti-histidine tag antibody. We designed a rapid method that allows the characterization of soluble candidates from a large number of genes or from a large number of variants that is highly compatible with structural genomics expectations.
对于结构和功能基因组学项目而言,用于鉴定高表达和高溶解性蛋白质的新型高通量方法至关重要。与经典的体内系统相比,一种更快且更便捷的筛选重组蛋白表达条件的方法是大肠杆菌无细胞表达系统。在此,我们描述了一种使用大肠杆菌无细胞提取物快速筛选重组蛋白表达和溶解性的方法。展示的结果涵盖了来自不同微生物的24个功能未知的开放阅读框。为了筛选可能干扰溶解性的不同变量,我们在两个温度(25℃和30℃)下,将带有组氨酸6标签的重组蛋白在N端或C端进行表达。重组蛋白的鉴定通过使用抗组氨酸标签抗体的斑点印迹法进行。我们设计了一种快速方法,可从大量基因或大量变体中鉴定出可溶性候选物,这与结构基因组学的预期高度兼容。