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重组人粒细胞集落刺激因子的复性:半胱氨酸/胱氨酸氧化还原系统的作用

Refolding of recombinant human granulocyte colony stimulating factor: effect of cysteine/cystine redox system.

作者信息

Tiwari Krishnanand, Shebannavar Sunil, Kattavarapu Krishna, Pokalwar Santosh, Mishra Maheshwari K, Chauhan Ugam Kumari

机构信息

Gennova Biopharmaceuticals Ltd, MIDC,Phase II, Hinjwadi, Pune 411057, India.

出版信息

Indian J Biochem Biophys. 2012 Aug;49(4):285-8.

Abstract

Granulocyte colony-stimulating factor (G-CSF) is a multifunctional cytokine which is widely used for treating neutropenia in humans. Evaluation of alternative to expensive components of redox buffer (reduced and oxidized glutathione) is an important step in reducing the cost of production of human biotherapeutic proteins. In the present study, refolding of recombinant human G-CSF expressed as inclusion bodies (IBs) in E. coli was optimized using cysteine and cystine redox agents. The refolding to correct native form of G-CSF was assessed by reverse phase high performance liquid chromatography (RP-HPLC). The optimized concentrations of cysteine and cystine for correct refolding of G-CSF were found to be 2 mM and 1 mM, respectively. The correctly refolded G-CSF was detected as early as 4 h of incubation in renaturation buffer containing optimized concentrations of cysteine (2 mM) and cystine (1 mM) redox agents. Refolding of G-CSF in optimized redox system increased with increase in shuffling time. Overall, the results suggested the use of cysteine/cystine redox pair could be an alternative to the costlier redox pairs for successful refolding of G-CSF and possibly other human biotherapeutic proteins of importance.

摘要

粒细胞集落刺激因子(G-CSF)是一种多功能细胞因子,广泛用于治疗人类中性粒细胞减少症。评估氧化还原缓冲液(还原型和氧化型谷胱甘肽)昂贵成分的替代物是降低人类生物治疗蛋白生产成本的重要一步。在本研究中,使用半胱氨酸和胱氨酸氧化还原试剂优化了在大肠杆菌中以包涵体(IBs)形式表达的重组人G-CSF的复性。通过反相高效液相色谱(RP-HPLC)评估G-CSF复性为正确天然形式的情况。发现G-CSF正确复性的半胱氨酸和胱氨酸的优化浓度分别为2 mM和1 mM。在含有优化浓度的半胱氨酸(2 mM)和胱氨酸(1 mM)氧化还原试剂的复性缓冲液中孵育4小时后,最早检测到正确复性的G-CSF。在优化的氧化还原系统中,G-CSF的复性随着重排时间的增加而增加。总体而言,结果表明半胱氨酸/胱氨酸氧化还原对可替代成本更高的氧化还原对,以成功复性G-CSF以及可能其他重要的人类生物治疗蛋白。

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