Mollaev Murad, Gorokhovets Neonila, Nikolskaya Elena, Faustova Maria, Zabolotsky Arthur, Sokol Maria, Tereshenko Oksana, Zhunina Olga, Shvets Vitaliy, Severin Evgeniy, Yabbarov Nikita
Moscow Technological University, Institute of Fine Chemical Technologies, 119571, Moscow, Russia.
Sechenov First Moscow State Medical University, Institute of Molecular Medicine, 119991, Moscow, Russia.
Protein Expr Purif. 2018 Mar;143:77-82. doi: 10.1016/j.pep.2017.11.001. Epub 2017 Nov 7.
A wide range of methods are known to increase the prokaryotic intracellular recombinant proteins solubility, for instance, growth at low temperature, supplementation of culture media with "chemical chaperones" (proline, glycine-betaine, and trehalose), co-expression with chaperones or highly soluble fusion partners. As an alternative, we have introduced the polyglutamate tag, which, as it has been shown, increased the protein solubility and facilitated folding. In this study we evaluated the minimal quantity of high density negatively charged EEEEVE amino acid repeats (pGlu) necessary to switch the recombinant receptor-binding domain of human alpha-fetoprotein (rbdAFP) expression almost entirely from the inclusion bodies to the soluble cytoplasmic fraction in E. coli. For this purpose, genetic constructs based on pET vectors coding rbdAFP and containing from 1 to 4 additional EEEEVE repeats at the C-terminus have been prepared. It was found that 3 pGlu repeats is the minimal number, that leads to a complete shift of the expression to the soluble cytoplasmic fraction in E. coli SHuffle Express T7 while 4 repeats were required for that in E. coli BL21(DE3). The rbdAFP contained 4 pGlu repeats was purified making use of ion-exchange chromatography and characterized by circular dichroism and ability to bind and accumulate in AFP receptor positive cancer cells in order to check for the structural and specific activity alterations related to the additional polyanionic sequence introduction.
已知有多种方法可提高原核细胞内重组蛋白的溶解度,例如,在低温下生长、在培养基中添加“化学伴侣”(脯氨酸、甘氨酸 - 甜菜碱和海藻糖)、与伴侣蛋白或高溶解性融合伙伴共表达。作为一种替代方法,我们引入了聚谷氨酸标签,如已表明的那样,它提高了蛋白质的溶解度并促进了折叠。在本研究中,我们评估了高密度带负电荷的EEEEVE氨基酸重复序列(pGlu)的最小数量,该数量可使人类甲胎蛋白的重组受体结合域(rbdAFP)在大肠杆菌中的表达几乎完全从包涵体转变为可溶性细胞质部分。为此,制备了基于编码rbdAFP的pET载体且在C末端含有1至4个额外EEEEVE重复序列的基因构建体。结果发现,3个pGlu重复序列是最小数量,可导致在大肠杆菌SHuffle Express T7中表达完全转移至可溶性细胞质部分,而在大肠杆菌BL21(DE3)中则需要4个重复序列。利用离子交换色谱法纯化了含有4个pGlu重复序列的rbdAFP,并通过圆二色性以及在AFP受体阳性癌细胞中结合和积累的能力进行表征,以检查与额外引入多阴离子序列相关的结构和特定活性变化。