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Human αB-crystallin as fusion protein and molecular chaperone increases the expression and folding efficiency of recombinant insulin

机译:人αB-晶状体蛋白作为融合蛋白和分子伴侣可提高重组胰岛素的表达和折叠效率

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摘要

Low expression and instability are significant challenges in the recombinant production of therapeutic peptides. The current study introduces a novel expression and purification system for human insulin production using the molecular chaperone αB-crystallin (αB-Cry) as a fusion partner protein. Insulin is composed of A- and B-chain containing three disulfide bonds (one intarchain and two interchains). We have constructed two plasmids harboring the A- or B-chain of insulin joined with human αB-Cry. This system is suitable for cloning of the genes and for directing the synthesis of large amounts of the fusion proteins αB-Cry/A-chain (αB-AC) and αB-Cry/B-chain (αB-BC). The construction of vectors, their efficient expression in Escherichia coli and simple purification of the fusion proteins and two insulin chains are described. A large amount of the recombinant fusion proteins with high purity was obtained by applying a single step anion exchange chromatography or metal chelate affinity. The insulin A- and B-chain were released from the fusion proteins using cyanogen bromide cleavage. The insulin peptides were obtained with an appreciable yield and high purity using one-step gel filtration chromatography. To increase efficiency of chain combination to produce insulin, αB-Cry was used under oxidative conditions. The purification of natively folded insulin was performed by phenyl sepharose hydrophobic interaction chromatography. Finally, using an insulin tolerance test in mice and various biophysical methods, the structure and function of purified human recombinant insulin was compared with authentic insulin, to verify folding of insulin to its native state. Overall, the novel expression system using αB-Cry is highly demanding for producing human insulin and functional protein. The procedure for αB-Cry-mediated insulin folding could be also applicable for the large-scale production of this highly important therapeutic peptide hormone.
机译:低表达和不稳定性是重组治疗肽的重大挑战。当前的研究介绍了一种新的表达和纯化系统,用于使用分子伴侣蛋白αB-晶状蛋白(αB-Cry)作为融合伴侣蛋白来生产人胰岛素。胰岛素由包含三个二硫键的一个A链和一个B链组成(一个内嵌链和两个内链)。我们已经构建了两个带有人αB-Cry的胰岛素A链或B链的质粒。该系统适用于基因克隆和指导大量融合蛋白αB-Cry/ A链(αB-AC)和αB-Cry/ B链(αB-BC)的合成。描述了载体的构建,它们在大肠杆菌中的有效表达以及融合蛋白和两条胰岛素链的简单纯化。通过一步一步阴离子交换层析或金属螯合亲和力获得了大量的高纯度重组融合蛋白。使用溴化氰裂解从融合蛋白中释放胰岛素A和B链。使用一步凝胶过滤色谱法以可观的产率和高纯度获得胰岛素肽。为了提高链结合产生胰岛素的效率,在氧化条件下使用了αB-Cry。天然折叠的胰岛素的纯化通过苯基琼脂糖凝胶疏水相互作用色谱法进行。最后,使用小鼠胰岛素抵抗测试和各种生物物理方法,将纯化的人重组胰岛素的结构和功能与真实的胰岛素进行比较,以验证胰岛素折叠至其天然状态。总体而言,使用αB-Cry的新型表达系统对产生人胰岛素和功能蛋白的要求很高。 αB-Cry介导的胰岛素折叠的程序也可适用于这种高度重要的治疗性肽激素的大规模生产。

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