Chong S, Montello G E, Zhang A, Cantor E J, Liao W, Xu M Q, Benner J
New England Biolabs Inc., 32 Tozer Road, Beverly, MA 01915, USA.
Nucleic Acids Res. 1998 Nov 15;26(22):5109-15. doi: 10.1093/nar/26.22.5109.
A conventional affinity protein purification system often requires a separate protease to separate the target protein from the affinity tag. This paper describes a unique protein purification system in which the target protein is fused to the C-terminus of a modified protein splicing element (intein). A small affinity tag is inserted in a loop region of the endonuclease domain of the intein to allow affinity purification. Specific mutations at the C-terminal splice junction of the intein allow controllable C-terminal peptide bond cleavage. The cleavage is triggered by addition of thiols such as dithiothreitol or free cysteine, resulting in elution of the target protein while the affinity-tagged intein remains immobilized on the affinity column. This system eliminates the need for a separate protease and allows purification of a target protein without the N-terminal methionine. We have constructed general cloning vectors and demonstrated single-column purification of several proteins. In addition, we discuss several factors that may affect the C-terminal peptide bond cleavage activity.
传统的亲和蛋白纯化系统通常需要一种单独的蛋白酶来将目标蛋白与亲和标签分离。本文描述了一种独特的蛋白纯化系统,其中目标蛋白与修饰的蛋白质剪接元件(内含肽)的C末端融合。一个小的亲和标签插入到内含肽内切酶结构域的一个环区域中,以实现亲和纯化。内含肽C末端剪接位点的特定突变允许可控的C末端肽键裂解。通过添加诸如二硫苏糖醇或游离半胱氨酸等硫醇来触发裂解,从而使目标蛋白洗脱,而带有亲和标签的内含肽仍固定在亲和柱上。该系统无需单独的蛋白酶,并且能够纯化不含N末端甲硫氨酸的目标蛋白。我们构建了通用的克隆载体,并证明了几种蛋白质的单柱纯化。此外,我们讨论了可能影响C末端肽键裂解活性的几个因素。