Zhao Zhonglin, Lu Wei, Dun Baoqing, Jin Dan, Ping Shuzhen, Zhang Wei, Chen Ming, Xu Ming-Qun, Lin Min
College of Biological Sciences, China Agricultural University, Beijing, 100094, China.
Appl Microbiol Biotechnol. 2008 Jan;77(5):1175-80. doi: 10.1007/s00253-007-1233-0. Epub 2007 Nov 1.
A two-intein purification system was developed for the affinity purification of GFPmut3*, a mutant of green fluorescent protein. The GFPmut3* was sandwiched between two self-cleaving inteins. This approach avoided the loss of the target protein which may result from in vivo cleavage of a single intein tag. The presence of N- and C-terminal chitin-binding domains allowed the affinity purification by a single-affinity chitin column. After the fusion protein was expressed and immobilized on the affinity column, self-cleavage of the inteins was sequentially induced to release the GFPmut3*. The yield was 2.41 mg from 1 l of bacterial culture. Assays revealed that the purity was up to 98% of the total protein. The fluorescence and circular dichroism spectrum of GFPmut3* demonstrated that the purified protein retains the correctly folded structure and function.
开发了一种双内含肽纯化系统,用于绿色荧光蛋白突变体GFPmut3的亲和纯化。GFPmut3夹在两个自我切割的内含肽之间。这种方法避免了因单个内含肽标签在体内切割而导致的目标蛋白损失。N端和C端几丁质结合结构域的存在使得可以通过单亲和几丁质柱进行亲和纯化。融合蛋白表达并固定在亲和柱上后,依次诱导内含肽自我切割以释放GFPmut3*。从1升细菌培养物中获得的产量为2.41毫克。分析表明,纯度高达总蛋白的98%。GFPmut3*的荧光和圆二色光谱表明,纯化后的蛋白保留了正确折叠的结构和功能。