Stols Lucy, Gu Minyi, Dieckman Lynda, Raffen Rosemarie, Collart Frank R, Donnelly Mark I
Environmental Research Division, Argonne National Laboratory, Argonne, IL 60439, USA.
Protein Expr Purif. 2002 Jun;25(1):8-15. doi: 10.1006/prep.2001.1603.
To establish high-throughput methods for protein crystallography, all aspects of the production and analysis of protein crystals must be accelerated. Automated, plate-based methods for cloning, expression, and evaluation of target proteins will help researchers investigate the vast numbers of proteins now available from sequenced genomes. Ligation-independent cloning (LIC) is well suited to robotic cloning and expression, but few LIC vectors are available commercially. We have developed a new LIC vector, pMCSG7, that incorporates the tobacco etch virus (TEV) protease cleavage site into the leader sequence. This protease is highly specific and functions under a wide range of conditions. The new vector incorporates an N-terminal his-tag followed by the TEV protease recognition site and a SspI restriction site used for LIC. The vector functioned as expected, giving high cloning efficiencies and strong expression of proteins. Purification and cleavage of a target protein showed that the his-tag and the TEV cleavage site function properly. The protein was purified and cleaved under different conditions to simulate both plate-based screening methods and large-scale purifications for crystal production. The vector also includes a pair of adjacent, unique restriction sites that will allow insertion of additional modules between the his-tag and the cleavage site of the leader sequence to generate a family of vectors suitable for high-throughput production of proteins.
为建立蛋白质晶体学的高通量方法,必须加快蛋白质晶体生产与分析的各个环节。基于平板的自动化克隆、表达和目标蛋白评估方法,将有助于研究人员研究目前从已测序基因组中获得的大量蛋白质。不依赖连接的克隆(LIC)非常适合机器人克隆和表达,但市售的LIC载体很少。我们开发了一种新的LIC载体pMCSG7,它将烟草蚀纹病毒(TEV)蛋白酶切割位点整合到前导序列中。这种蛋白酶具有高度特异性,且在广泛的条件下发挥作用。新载体包含一个N端组氨酸标签,其后是TEV蛋白酶识别位点和一个用于LIC的SspI限制性酶切位点。该载体按预期发挥作用,克隆效率高,蛋白质表达强。对目标蛋白的纯化和切割表明,组氨酸标签和TEV切割位点功能正常。在不同条件下对蛋白质进行纯化和切割,以模拟基于平板的筛选方法和用于晶体生产的大规模纯化。该载体还包括一对相邻的独特限制性酶切位点,可在组氨酸标签和前导序列的切割位点之间插入额外的模块,以生成适合高通量蛋白质生产的一系列载体。