Kim Yana V, Gasparian Marine E, Bocharov Eduard V, Chertkova Rita V, Tkach Elena N, Dolgikh Dmitry A, Kirpichnikov Mikhail P
Department of Bioengineering, Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, RAS, 16/10 Miklukho-Maklaya, 117997, Moscow, Russia.
Mol Biotechnol. 2015 Feb;57(2):160-71. doi: 10.1007/s12033-014-9812-7.
Mature transforming growth factor beta1 (TGF-β1) is a homodimeric protein with a single disulfide bridge between Cys77 on the respective monomers. The synthetic DNA sequence encoding the mature human TGF-β1/C77S (further termed TGF-β1m) was cloned into plasmid pET-32a downstream to the gene of fusion partner thioredoxin (Trx) immediately after the DNA sequence encoding enteropeptidase recognition site. High-level expression (~1.5 g l(-1)) of Trx/TGF-β1m fusion was achieved in Escherichia coli BL21(DE3) strain mainly in insoluble form. The fusion was solubilized and refolded in glutathione redox system in the presence of zwitterionic detergent CHAPS. After refolding, Trx/TGF-β1m fusion was cleaved by enteropeptidase, and the carrier protein of TGF-β1m was separated from thioredoxin on Ni-NTA agarose. Separation of monomeric molecules from the noncovalently bounded oligomers was done using cation-exchange chromatography. The structure of purified TGF-β1m was confirmed by circular dichroism analysis. The developed technology allowed purifying biologically active tag-free monomeric TGF-β1m from bacteria with a yield of about 2.8 mg from 100 ml cell culture. The low-cost and easy purification steps allow considering that our proposed preparation of recombinant monomeric TGF-β1 could be employed for in vitro and in vivo experiments as well as for therapeutic intervention.
成熟的转化生长因子β1(TGF-β1)是一种同二聚体蛋白,在各自单体的半胱氨酸77之间有一个二硫键。编码成熟人TGF-β1/C77S(以下简称TGF-β1m)的合成DNA序列被克隆到质粒pET-32a中,位于融合伴侣硫氧还蛋白(Trx)基因的下游,紧接着是编码肠肽酶识别位点的DNA序列。Trx/TGF-β1m融合蛋白在大肠杆菌BL21(DE3)菌株中实现了高水平表达(约1.5 g l(-1)),主要以不溶性形式存在。该融合蛋白在两性离子去污剂CHAPS存在的情况下,在谷胱甘肽氧化还原系统中溶解并复性。复性后,Trx/TGF-β1m融合蛋白被肠肽酶切割,TGF-β1m的载体蛋白与硫氧还蛋白在Ni-NTA琼脂糖上分离。使用阳离子交换色谱法从非共价结合的寡聚物中分离出单体分子。通过圆二色性分析证实了纯化的TGF-β1m的结构。所开发的技术能够从细菌中纯化出无标签的具有生物活性的单体TGF-β1m,100 ml细胞培养物的产量约为2.8 mg。低成本且易于纯化的步骤使得我们所提出的重组单体TGF-β1的制备方法可用于体外和体内实验以及治疗干预。