Donnelly Mark I, Zhou Min, Millard Cynthia Sanville, Clancy Shonda, Stols Lucy, Eschenfeldt William H, Collart Frank R, Joachimiak Andrzej
Biosciences Division, Argonne National Laboratory, IL 60439, USA.
Protein Expr Purif. 2006 Jun;47(2):446-54. doi: 10.1016/j.pep.2005.12.011. Epub 2006 Jan 30.
Production of milligram quantities of numerous proteins for structural and functional studies requires an efficient purification pipeline. We found that the dual tag, his(6)-tag-maltose-binding protein (MBP), intended to facilitate purification and enhance proteins' solubility, disrupted such a pipeline, requiring additional screening and purification steps. Not all proteins rendered soluble by fusion to MBP remained soluble after its proteolytic removal, and in those cases where the protein remained soluble, standard purification protocols failed to remove completely the stoichiometric amount of his(6)-tagged MBP generated by proteolysis. Both liabilities were alleviated by construction of a vector that produces fusion proteins in which MBP, the his(6)-tag and the target protein are separated by highly specific protease cleavage sites in the configuration MBP-site-his(6)-site-protein. In vivo cleavage at the first site by co-expressed protease generated untagged MBP and his(6)-tagged target protein. Proteins not truly rendered soluble by transient association with MBP precipitated, and untagged MBP was easily separated from the his-tagged target protein by conventional protocols. The second protease cleavage site allowed removal of the his(6)-tag.
为进行结构和功能研究而生产毫克级的多种蛋白质需要高效的纯化流程。我们发现,旨在促进纯化并提高蛋白质溶解度的双标签,即六聚组氨酸标签-麦芽糖结合蛋白(MBP),扰乱了这样一个流程,需要额外的筛选和纯化步骤。并非所有与MBP融合后变得可溶的蛋白质在其被蛋白酶切割去除后仍保持可溶,而且在那些蛋白质仍保持可溶的情况下,标准纯化方案无法完全去除蛋白酶解产生的化学计量的六聚组氨酸标签化的MBP。通过构建一种载体来生产融合蛋白,其中MBP、六聚组氨酸标签和目标蛋白在MBP-位点-六聚组氨酸-位点-蛋白的构型中被高度特异性的蛋白酶切割位点隔开,这两种问题都得到了缓解。共表达的蛋白酶在第一个位点进行体内切割,产生无标签的MBP和六聚组氨酸标签化的目标蛋白。那些通过与MBP短暂结合而未真正变得可溶的蛋白质会沉淀下来,并且无标签的MBP可以通过常规方案很容易地与六聚组氨酸标签化的目标蛋白分离。第二个蛋白酶切割位点允许去除六聚组氨酸标签。