Kumar G Senthil, Sarma Siddhartha P
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.
Protein Expr Purif. 2010 Apr;70(2):137-42. doi: 10.1016/j.pep.2009.10.017. Epub 2009 Nov 1.
BTK-2, a 32 residue scorpion toxin initially identified in the venom of red Indian scorpion Mesobuthus tamulus was cloned, overexpressed and purified using Cytochrome b(5) fusion protein system developed in our laboratory. The synthetic gene coding for the peptide was designed taking into account optimal codon usage by Escherichia coli. High expression levels of the fusion protein enabled facile purification of this peptide. The presence of disulfide bonded isomers, occurring as distinctly populated states even in the fusion protein, were separated by gel filtration chromatography. The target peptide was liberated from the host protein by Tev protease cleavage and subsequent purification was achieved using RP-HPLC methods. Reverse phase HPLC clearly showed the presence of at least two isomeric forms of the peptide that were significantly populated. The oxidative folding of BTK-2 was achieved under ambient conditions during the course of purification. Structural characterization of the two forms, by solution homonuclear and heteronuclear NMR methods, has shown that these two forms exhibit significantly different structural properties, and represent the natively folded and a "misfolded" form of the peptide. The formation of properly folded BTK-2 as a major fraction without the use of in vitro oxidative refolding methods clearly indicate the versatility of the Cytochrome b(5) fusion protein system for the efficient production of peptides for high resolution NMR studies.
BTK - 2是一种最初从印度红蝎Mesobuthus tamulus毒液中鉴定出的由32个氨基酸残基组成的蝎毒素,利用我们实验室开发的细胞色素b(5)融合蛋白系统进行克隆、过量表达和纯化。编码该肽的合成基因在设计时考虑了大肠杆菌的最佳密码子使用情况。融合蛋白的高表达水平使得该肽的纯化变得容易。即使在融合蛋白中,以明显不同的聚集状态存在的二硫键结合异构体,通过凝胶过滤色谱法进行分离。通过Tev蛋白酶切割从宿主蛋白中释放出目标肽,随后使用反相高效液相色谱法(RP - HPLC)进行纯化。反相高效液相色谱法清楚地显示出该肽至少存在两种明显聚集的异构体形式。在纯化过程中,BTK - 2在环境条件下实现了氧化折叠。通过溶液同核和异核核磁共振方法对这两种形式进行结构表征,结果表明这两种形式表现出显著不同的结构特性,分别代表该肽的天然折叠形式和“错误折叠”形式。在不使用体外氧化重折叠方法的情况下,以主要部分形式形成正确折叠的BTK - 2,这清楚地表明了细胞色素b(5)融合蛋白系统在高效生产用于高分辨率核磁共振研究的肽方面的通用性。