首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Integrative refolding and purification of histidine-tagged protein by like-charge facilitated refolding and metal-chelate affinity adsorption
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Integrative refolding and purification of histidine-tagged protein by like-charge facilitated refolding and metal-chelate affinity adsorption

机译:通过类似电荷促进的重折叠和金属螯合亲和力吸附,对组氨酸标签的蛋白质进行整合重折叠和纯化

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This work proposed an integrative method of protein refolding and purification by like-charged resin facilitated refolding and metal-chelate affinity adsorption. Hexahistidine-tagged enhanced green fluorescence protein (EGFP) was overexpressed in Escherichia coli as inclusion bodies (IBs), and then the protein was refolded and purified from urea-solubilized IBs by this method. A metal-chelating resin was fabricated by coupling iminodiacetic acid (IDA) to agarose gel (Sepharose FF). The anionic resin was used to facilitate the refolding of like-charged EGFP from IBs. After refolding, nickel ions were introduced for the affinity purification of the target protein by metal-chelating adsorption. It was found that the resin was effective in facilitating EGFP refolding. For 0.1 mg/mL EGFP IBs refolding, the fluorescence recovery (FR) by direct dilution was only 64%; addition of only 0.05 g/mL resin increased the FR to over 90%. Moreover, the FR increased with increasing resin concentration. Owning to the shielding effect of the oppositely charged impurities embedded in IBs on the surface charges of the IDA resin, more resin particles were required to exert an aggregation inhibition effect in the IBs protein refolding. Additionally, compared with direct-dilution refolding, inclusion of like-charged resins not only offered an enhanced FR of EGFP, but also bound some opposite-charged contaminant proteins, leading to a preliminary purification effect. Afterwards, the refolded EGFP was recovered by metal-chelating adsorption at an FR of 85% and purity of 93%. This work has thus extended the like-charge facilitated protein refolding strategy to the integrative protein refolding and purification.
机译:这项工作提出了一种整合蛋白质的方法,即通过带相同电荷的树脂促进蛋白质的重折叠和金属-螯合物的亲和力吸附。六组氨酸标记的增强型绿色荧光蛋白(EGFP)在大肠杆菌中以包涵体(IBs)的形式过表达,然后通过该方法将蛋白重新折叠并从尿素增溶的IBs中纯化。通过将亚氨基二乙酸(IDA)与琼脂糖凝胶(Sepharose FF)偶联来制备金属螯合树脂。阴离子树脂用于促进从IBs重新折叠带相同电荷的EGFP。重新折叠后,引入镍离子以通过金属螯合吸附亲和纯化目标蛋白。发现该树脂在促进EGFP重折叠方面是有效的。对于0.1 mg / mL EGFP IB的重折叠,直接稀释后的荧光回收率(FR)只有64%。仅添加0.05 g / mL树脂可使FR增至90%以上。而且,FR随着树脂浓度的增加而增加。由于嵌入在IBs中带相反电荷的杂质对IDA树脂表面电荷的屏蔽作用,需要更多的树脂颗粒才能在IBs蛋白质复性中发挥聚集抑制作用。另外,与直接稀释重折叠相比,包含相同电荷的树脂不仅提供了增强的EGFP FR,而且还结合了一些带相反电荷的污染物蛋白,从而产生了初步的纯化效果。之后,通过金属螯合吸附以FR为85%,纯度为93%回收了重新折叠的EGFP。因此,这项工作已将类似电荷促进的蛋白重折叠策略扩展到了整合蛋白的重折叠和纯化。

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