Johnston K, Clements A, Venkataramani R N, Trievel R C, Marmorstein R
The Wistar Institute, Philadelphia, Pennsylvania, 19104, USA.
Protein Expr Purif. 2000 Dec;20(3):435-43. doi: 10.1006/prep.2000.1313.
This report describes the development and application of a dual vector coexpression system for the overproduction of heteromeric cell cycle and transcriptional regulatory protein complexes in bacteria. To facilitate these studies we constructed a T7-based expression plasmid, pRM1 that contains an origin of replication derived from p15A, and a gene encoding kanamycin resistance. This expression vector is compatible with ColE1-derived plasmids found in the pET family of T7 expression vectors, which encode ampicillin resistance. It also has the same multiple cloning sites as the pET- derived pRSET vector, allowing easy shuttling between the two expression vectors. Cotransformation of the pRM1 and pET-derived expression vectors into an Escherichia coli strain such as BL21(DE3) results in a significant level of coexpression of heteromeric protein complexes. We demonstrate the applicability of combining the pRM1 and pET-derived vectors for the coexpression of cell cycle regulatory components, pRB/E7 and pRB/E1a, and the transcriptional regulatory complexes, SRF/SAP-1 and SRF/Elk-1. We further use the pRB/E1a complex to demonstrate that these coexpressed complexes can be purified to homogeneity for further studies. Use of the pRM1 vector in combination with the pET-derived vectors should be generally applicable for the large-scale coexpression and purification of a wide variety of heteromeric protein complexes for biochemical, biophysical, and structural studies.
本报告描述了一种双载体共表达系统的开发与应用,该系统用于在细菌中过量生产异源细胞周期和转录调节蛋白复合物。为便于开展这些研究,我们构建了一种基于T7的表达质粒pRM1,它含有源自p15A的复制起点和一个编码卡那霉素抗性的基因。这种表达载体与T7表达载体pET家族中发现的源自ColE1的质粒兼容,后者编码氨苄青霉素抗性。它还具有与源自pET的pRSET载体相同的多克隆位点,便于在两种表达载体之间轻松穿梭。将pRM1和源自pET的表达载体共转化到大肠杆菌菌株(如BL21(DE3))中,会导致异源蛋白复合物的显著共表达水平。我们证明了将pRM1和源自pET的载体组合用于共表达细胞周期调节成分pRB/E7和pRB/E1a以及转录调节复合物SRF/SAP-1和SRF/Elk-1的适用性。我们进一步使用pRB/E1a复合物来证明这些共表达的复合物可以纯化至同质状态以进行进一步研究。将pRM1载体与源自pET的载体结合使用,通常应适用于大规模共表达和纯化多种异源蛋白复合物,以用于生化、生物物理和结构研究。