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一种用于重组整合膜蛋白表达和稳定性高通量筛选的高效策略。

An efficient strategy for high throughput screening of recombinant integral membrane protein expression and stability.

作者信息

Fan Junping, Heng Jie, Dai Shuyan, Shaw Neil, Zhou Bei, Huang Bo, He Zheng, Wang Ya, Jiang Taijiao, Li Xuemei, Liu Zhijie, Wang Xianping, Zhang Xuejun C

机构信息

National Laboratory of Macromolecules, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Beijing 100101, China.

出版信息

Protein Expr Purif. 2011 Jul;78(1):6-13. doi: 10.1016/j.pep.2011.02.010. Epub 2011 Feb 24.

Abstract

Membrane proteins account for about 30% of the genomes sequenced to date and play important roles in a variety of cellular functions. However, determining the three-dimensional structures of membrane proteins continues to pose a major challenge for structural biologists due to difficulties in recombinant expression and purification. We describe here a high throughput pipeline for Escherichia coli based membrane protein expression and purification. A ligation-independent cloning (LIC)-based vector encoding a C-terminal green fluorescence protein (GFP) tag was used for cloning in a high throughput mode. The GFP tag facilitated expression screening in E. coli through both cell culture fluorescence measurements and in-gel fluorescence imaging. Positive candidates from the GFP screening were subsequently sub-cloned into a LIC-based, GFP free vector for further expression and purification. The expressed, C-terminal His-tagged membrane proteins were purified via membrane enrichment and Ni-affinity chromatography. Thermofluor technique was applied to screen optimal buffers and detergents for the purified membrane proteins. This pipeline has been successfully tested for membrane proteins from E. coli and can be potentially expanded to other prokaryotes.

摘要

膜蛋白约占迄今已测序基因组的30%,在多种细胞功能中发挥重要作用。然而,由于重组表达和纯化存在困难,确定膜蛋白的三维结构仍然是结构生物学家面临的一项重大挑战。我们在此描述一种基于大肠杆菌的膜蛋白表达和纯化的高通量流程。一种基于不依赖连接酶克隆(LIC)、编码C端绿色荧光蛋白(GFP)标签的载体用于高通量模式下的克隆。GFP标签通过细胞培养荧光测量和凝胶内荧光成像促进了在大肠杆菌中的表达筛选。来自GFP筛选的阳性候选物随后被亚克隆到基于LIC的、不含GFP的载体中进行进一步表达和纯化。表达的C端带有组氨酸标签的膜蛋白通过膜富集和镍亲和层析进行纯化。应用热荧光技术筛选纯化膜蛋白的最佳缓冲液和去污剂。该流程已成功用于大肠杆菌膜蛋白的测试,并有可能扩展到其他原核生物。

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