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作为高通量蛋白质生产辅助手段的激烈火球菌特定基因的小规模和大规模表达比较。

Comparison of small- and large-scale expression of selected Pyrococcus furiosus genes as an aid to high-throughput protein production.

作者信息

Sugar Frank J, Jenney Francis E, Poole Farris L, Brereton Phillip S, Izumi Michi, Shah Claudia, Adams Michael W W

机构信息

Department of Biochemistry and Molecular Biology, Southeastern Collaboratory for Structural Genomics, University of Georgia, Athens, GA 30602, USA.

出版信息

J Struct Funct Genomics. 2005;6(2-3):149-58. doi: 10.1007/s10969-005-3341-3.

Abstract

As the natural extension of the genomic sequencing projects, the goal of the various world-wide Structural Genomics projects is development of techniques for high throughput (HTP) cloning, protein overexpression, purification and structural determination, with the ultimate goal of determining all possible protein structures. Rapid (small-scale) screening of potential expression clones under different growth conditions is presumed to be possible and a viable way to increase throughput of protein expression. In order to test the utility of screening for soluble, heterologous protein expression, we have compared the production of recombinant proteins on a small scale (1 ml cultures in 96-well plates) in Escherichia coli under two growth conditions [a rich medium and a defined (minimal) medium] using an enzyme-linked immunosorbent assay (ELISA) against the affinity tag, with the amount of recombinant protein produced during the large-scale (500 ml) growth of E. coli. The large-scale expression products were examined after a single step affinity purification by visualization on SDS-PAGE gels. Of the open reading frames that were successfully expressed on the 1 ml scale as judged by immunodetection, 80% of them successfully scaled-up to 500 ml in a rich medium and 81% of them scaled-up in a defined medium. This is significantly higher than would be expected by a randomly selected expression condition and validates the use of small-scale expression as a screening tool for more efficient protein production.

摘要

作为基因组测序项目的自然延伸,世界各地各种结构基因组学项目的目标是开发高通量(HTP)克隆、蛋白质过表达、纯化和结构测定技术,最终目标是确定所有可能的蛋白质结构。据推测,在不同生长条件下对潜在表达克隆进行快速(小规模)筛选是可行的,也是提高蛋白质表达通量的一种可行方法。为了测试筛选可溶性异源蛋白质表达的效用,我们使用针对亲和标签的酶联免疫吸附测定(ELISA),比较了在两种生长条件下[丰富培养基和限定(基本)培养基]大肠杆菌中小规模(96孔板中1毫升培养物)重组蛋白的产量,并与大肠杆菌大规模(500毫升)生长过程中产生的重组蛋白量进行了比较。通过在SDS-PAGE凝胶上可视化,对经过一步亲和纯化后的大规模表达产物进行了检测。通过免疫检测判断,在1毫升规模上成功表达的开放阅读框中,80%在丰富培养基中成功放大到500毫升,81%在限定培养基中放大。这显著高于随机选择的表达条件所预期的结果,并验证了小规模表达作为更高效蛋白质生产筛选工具的用途。

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