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使用响应面法优化大肠杆菌中肿瘤坏死因子-α的过表达:蛋白质的纯化及寡聚化研究

Optimization of TNF-α overexpression in Escherichia coli using response surface methodology: Purification of the protein and oligomerization studies.

作者信息

Papaneophytou Christos P, Kontopidis George A

机构信息

The Centre for Research and Technology of Thessaly, 3rd km Karditsa-Mitropolis, Karditsa 43100, Greece.

出版信息

Protein Expr Purif. 2012 Nov;86(1):35-44. doi: 10.1016/j.pep.2012.09.002. Epub 2012 Sep 16.

DOI:10.1016/j.pep.2012.09.002
PMID:22989548
Abstract

Tumor necrosis factor-α (TNF-α) is responsible for many autoimmune disorders including rheumatoid arthritis, psoriasis, Chron's disease, stroke, and atherosclerosis. Thus, inhibition of TNF-α is a major challenge in drug discovery. However, a sufficient amount of purified protein is needed for the in vitro screening of potential TNF-α inhibitors. In this work, induction conditions for the production of human TNF-α fusion protein in a soluble form by recombinant Escherichia coli BL21(DE3) pLysS were optimized using response surface methodology based on the central composite design. The induction conditions included cell density prior induction (OD(600nm)), post-induction temperature, IPTG concentration and post-induction time. Statistical analysis of the results revealed that all variables and their interactions had significant impact on production of soluble TNF-α. An 11% increase of TNF-α production was achieved after determination of the optimum induction conditions: OD(600nm) prior induction 0.55, a post induction temperature of 25°C, an IPTG concentration of 1mM and a post-induction time of 4h. We have also studied TNF-α oligomerization, the major property of this protein, and a K(d) value of 0.26nM for protein dimerization was determined. The concentration of where protein trimerization occurred was also detected. However, we failed to determine a reliable K(d) value for protein trimerization probably due to the complexibility of our model.

摘要

肿瘤坏死因子-α(TNF-α)与许多自身免疫性疾病有关,包括类风湿性关节炎、银屑病、克罗恩病、中风和动脉粥样硬化。因此,抑制TNF-α是药物研发中的一项重大挑战。然而,在体外筛选潜在的TNF-α抑制剂时,需要足够量的纯化蛋白。在这项工作中,基于中心复合设计,采用响应面法优化了重组大肠杆菌BL21(DE3)pLysS以可溶性形式生产人TNF-α融合蛋白的诱导条件。诱导条件包括诱导前的细胞密度(OD(600nm))、诱导后的温度、IPTG浓度和诱导后的时间。结果的统计分析表明,所有变量及其相互作用对可溶性TNF-α的产生都有显著影响。在确定最佳诱导条件后,TNF-α的产量提高了11%:诱导前OD(600nm)为0.55,诱导后温度为25°C,IPTG浓度为1mM,诱导后时间为4小时。我们还研究了TNF-α的寡聚化,这是该蛋白的主要特性,并确定了蛋白二聚化的K(d)值为0.26nM。还检测了蛋白三聚化发生的浓度。然而,由于我们模型的复杂性,我们未能确定蛋白三聚化的可靠K(d)值。

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