dileukin Diftitox的分子对接和计算机研究:野生型与C519S突变体的比较

Mohamad Najarasl, M. Zeinoddini, A. Saeeidinia, Reza Hasan Sajedi
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摘要

背景Denileukin diftitox(商品名Ontak)是第一种利用基因工程将白喉毒素的结合结构域替换为人白细胞介素2(DT389IL-2)的氨基酸序列的重组免疫毒素。蛋白质的纯度、稳定性和结构性质是扩大生产这种融合蛋白的关键因素。在该IM中,位置519具有游离半胱氨酸残基,其在重折叠过程中导致交叉S-S结合的形成,因此,可能发生蛋白质的错误折叠/聚集。材料和方法为了抑制错误折叠/聚集,我们用定点突变的方法用丝氨酸残基取代半胱氨酸519,然后用生物信息学工具预测和测定突变蛋白与IL-2受体结合的能力。为此,从Drugbank中采用了denileukin diftitox的序列,并应用了上述取代。有两种方法确定了融合蛋白的折叠:从头建模方法(利用I-TASSER数据库)和同源建模方法(使用一些数据库和工具,包括Swiss Model、PHYRE2、M4T、ModWeb、RaptorX和EasyModeller)。最后,通过pyDock和Zdock对接服务器以及Hex软件研究了蛋白质与IL-2受体结合的能力。结果该蛋白的突变形式(C519S)可适当折叠,通过STRUM测量模型的ΔG没有显著变化。此外,对接分析表明,该蛋白可以有效地与IL-2受体结合,而结合能没有任何实质性变化。结论本研究表明,该蛋白的突变可以以相似的亲和力和更合适的重折叠过程取代二硫替托克登白素。
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Molecular Docking and In Silico Study of Denileukin Diftitox: Comparison of Wild Type With C519S Mutant
BackgroundDenileukin diftitox (trade name, Ontak) is the first recombinant immunotoxin (IM), in which the binding domain of diphtheria toxin has been replaced by the amino acid sequence of human interleukin-2 (DT389IL-2) using genetic engineering. Purity, stability, and structural property of the protein are critical factors for the scale-up production of this fusion protein. In this IM, location 519 has free cysteine residue that leads to cross S-S bound formation in the refolding process and, as a result, misfolding/aggregation of the protein may occur.Materials and MethodsTo inhibit misfolding/aggregation, we substituted cysteine 519 by a serine residue with site-directed mutagenesis, and then the ability of the mutated protein for binding to the IL-2 receptor was predicted and determined by bioinformatics tools. For this purpose, the sequence of the denileukin diftitox was adopted from Drugbank, and the mentioned substitution applied. Two methods determined the folding of the fusion protein: de novo modeling method (by utilizing the I-TASSER database) and homology modeling method (by using some databases and tools, including Swiss-Model, PHYRE2, M4T, ModWeb, RaptorX, and EasyModeller). Finally, the ability of the proteins for binding to the IL-2 receptor was investigated by pyDock and Zdock docking servers, as well as Hex software.ResultsThe result showed that the mutated form (C519S) of this protein folds appropriately, and the ΔG of the models, measured by STRUM, showed no significant variation.  Also, docking analysis has shown that the protein can efficiently bind to the IL-2 receptor without any substantial changes in the binding energy.ConclusionThe present study shows that the suggested mutation of this protein can be an acceptable replacement for denileukin diftitox with a similar affinity and a more proper refolding process.
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