Frangioni J V, Neel B G
Molecular Medicine Unit, Beth Israel Hospital, Boston, Massachusetts 02215.
Anal Biochem. 1993 Apr;210(1):179-87. doi: 10.1006/abio.1993.1170.
The pGEX glutathione S-transferase (GST) fusion protein system is used extensively for high level expression and rapid purification of fusion proteins from bacterial and eukaryotic cell lysates. Unfortunately, many GST fusion proteins are partially or completely insoluble, and thus cannot be purified efficiently from a crude lysate. We have adapted a protocol, previously used to solubilize actin, for the purification of otherwise insoluble GST fusion proteins. Using a GST fusion of the nontransmembrane protein tyrosine phosphatase 1B, we demonstrate that tyrosine phosphatase enzymatic activity is maintained during the purification process. We provide methods for the purification of GST fusion proteins at analytical and preparative scales, and demonstrate that saturation of glutathione agarose is dependent on fusion protein molecular weight. Finally, we present strategies for eluting purified fusion proteins from glutathione agarose beads, for storing eluted protein, and for preparing covalently coupled affinity matrices.
pGEX谷胱甘肽S-转移酶(GST)融合蛋白系统被广泛用于从细菌和真核细胞裂解物中高水平表达和快速纯化融合蛋白。不幸的是,许多GST融合蛋白部分或完全不溶,因此无法从粗裂解物中有效纯化。我们采用了一种先前用于溶解肌动蛋白的方案,用于纯化原本不溶的GST融合蛋白。使用非跨膜蛋白酪氨酸磷酸酶1B的GST融合体,我们证明在纯化过程中酪氨酸磷酸酶的酶活性得以保持。我们提供了在分析和制备规模上纯化GST融合蛋白的方法,并证明谷胱甘肽琼脂糖的饱和度取决于融合蛋白的分子量。最后,我们提出了从谷胱甘肽琼脂糖珠上洗脱纯化融合蛋白、储存洗脱蛋白以及制备共价偶联亲和基质的策略。