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首页> 外文期刊>Protein engineering design & selection: PEDS >Optimized sequential purification protocol for in vivo site-specific biotinylated full-length dengue virus capsid protein
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Optimized sequential purification protocol for in vivo site-specific biotinylated full-length dengue virus capsid protein

机译:优化的体内部位特异性生物素化全长登革热病毒衣壳蛋白的顺序纯化方案

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摘要

Dengue virus (DENV) capsid (C) protein is one of the three structural proteins that form a mature virus. The main challenge impeding the study of this protein is to generate pure non-truncated, full-length C proteins for structural and functional studies. This is mainly due to its small molecular weight, highly positively charged, stability and solubility properties. Here, we report a strategy to construct, express, biotinylate and purify non-truncated, full-length DENV C protein. A 6× His tag and a biotin acceptor peptide (BAP) were cloned at the N-terminus of C protein using overlapping extension-polymerase chain reaction method for site-specific biotinylation. The final construct was inserted into pET28a plasmid and BL-21 (CodonPlus) expression competent cell strain was selected as there are 12% rare codons in the C protein sequence. Strikingly, we found that our recombinant proteins with BAP were biotinylated endogenously with high efficiency in Escherichia coli BL-21 strains. To purify this His-tagged C protein, nickel-nitriloacetic acid affinity chromatography was first carried out under denaturing condition. After stepwise dialysis and concurrent refolding, ion exchange-fast protein liquid chromatography was performed to further separate the residual contaminants. To obtain C protein with high purity, a final round of purification with size exclusion chromatography was carried out and a single peak corresponding to C protein was attained. With this optimized sequential purification protocol, we successfully generated pure biotinylated full-length DENV C protein. The functionality of this purified non-truncated DENV C protein was examined and it was suitable for structural and molecular studies.
机译:登革热衣壳蛋白(C)是形成成熟病毒的三种结构蛋白之一。阻碍该蛋白研究的主要挑战是生成纯的非截短的全长C蛋白,用于结构和功能研究。这主要是由于其分子量小,带正电的高度,稳定性和溶解性。在这里,我们报告了一种构建,表达,生物素化和纯化非截短的全长DENV C蛋白的策略。使用重叠延伸聚合酶链反应方法将6x His标签和生物素受体肽(BAP)克隆到C蛋白的N端,进行位点特异性生物素化。将最终构建体插入pET28a质粒中,并选择BL-21(CodonPlus)表达感受态细胞株,因为在C蛋白序列中存在12%的稀有密码子。令人惊讶的是,我们发现带有BAP的重组蛋白在大肠杆菌BL-21菌株中被内源性高效生物素化。为了纯化该His-标记的C蛋白,首先在变性条件下进行镍-亚硝酸乙酸亲和层析。逐步透析并同时重折叠后,进行离子交换快速蛋白液相色谱法以进一步分离残留的污染物。为了获得高纯度的C蛋白,用尺寸排阻色谱法进行了最后一轮纯化,并获得了对应于C蛋白的单峰。通过这种优化的顺序纯化方案,我们成功生成了纯生物素化的全长DENV C蛋白。检查了这种纯化的非截短的DENV C蛋白的功能,它适用于结构和分子研究。

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