小分子伴侣协助重组人γ-干扰素体外复性研究
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浙江省自然科学基金(201099)和教育部留学回国人员科研启动基金资助项目.


Minichaperone (GroEL191~345)-mediated In vitro Refolding of Recombinant Human Interferon-γ Inclusion Body
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This work was supported by a grant from Zhejiang Provincial Natural Science Foundation of China (201099) and The Scientific Research Foundation for The Returned Overseas Chinese Scholars, State Education Ministry.

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    摘要:

    考察了小分子伴侣在游离和固定化两种情况下,对重组人γ-干扰素(rhIFN-γ)体外重折叠复性的作用.实验结果表明,小分子伴侣GroEL191~345的加入有效地促进了rhIFN-γ的复性,在初始蛋白质浓度为100 mg/L时,rhIFN-γ复性后蛋白质回收率提高了2.2倍,总活性提高了近3倍;将小分子伴侣固定化在NHS-activated Sepharose Fast Flow凝胶后,不但能重复利用,而且进一步提高了rhIFN-γ复性效率,在初始蛋白质浓度为400 mg/L 时,仍使蛋白质回收率达到46.29%和比活达到1.95×107 U/mg.

    Abstract:

    The interferons are cytokines with antiviral, antiproliferative and immunomodulatory activities. Among three major distinguished types, interferon-gamma (IFN-γ) is more popular for its specific properties in inhibition of cell growth and modulation of immune functions. Now the recombinant DNA techniques make it possible to express recombinant IFN-γ in E.coli in large amounts, however this may result in the formation of inclusion bodies, and the recovery of biologically active products becomes significant. As the minimal mechanism of GroEL-mediated protein folding, minichaperones, fragments encompassing the apical domain of GroEL, can facilitate the refolding of several proteins in vitro without requiring GroES, ATP, or the cage-like structure of multimeric GroEL. Here minichaperone (GroEL191~345)-mediated in vitro refolding of recombinant human interferon gamma (rhIFN-γ) in free and immobilized GroEL191~345 systems are studied. SDS-PAGE was performed with Laemmli's Tris-glycine buffer system for protein analysis. Protein concentrations were determined by using a modification of Lowrys method with bovine serum albumin as reference and total activities of renatured rhIFN-γ were measured by CPE method. The results showed that the presence of GroEL191~345 in the refolding buffer not only enhanced the specific activity, but also promoted the refolding efficiency. With the initial protein concentration of 100 mg/L, the protein yield and total activity of rhIFN-γ assisted by GroEL191~345 was 2.2 and 3 folds of that under spontaneous condition respectively. Optimal operating parameters in refolding of rhIFN-γ assisted by GroEL191~345 were as follows: refolding temperature 15℃, refolding time 4 h, pH 7.7, initial concentration of IFN-γ 100~200 mg/L and the molar ratio of GroEL 191~345 versus IFN-γ 1∶1~2∶1. Furthermore, the immobilization of GroEL191~345 on NHS-activated sepharose fast flow made it possible to be recycled. The protein yield and the specific activity of rhIFN-γ were 46.29% and 1.95×107 U/mg respectively even the initial protein concentration was up to 400 mg/L.

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关怡新,费峥峥,罗曼,姚善泾.小分子伴侣协助重组人γ-干扰素体外复性研究[J].生物化学与生物物理进展,2004,31(10):907-911

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  • 收稿日期:2004-04-26
  • 最后修改日期:2004-06-30
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