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Rational design of a new mutant of tobacco etch virus protease in order to increase the in vitro solubility

机译:烟草蚀刻病毒蛋白酶新突变体的理性设计,以增加体外溶解度

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Background and purpose: Tobacco etch virus (TEV) protease is a protease with high sequence specificity which is useful for the cleavage of fusion proteins. A major limitation of this enzyme is its relatively poor solubility. This study aimed to investigate the effects of some suggested mutations by online tools and molecular dynamics simulation to improve the solubility of TEV protease in vitro . Experimental approach: We designed a rational multi-stage process to determine the solubilizing mutations of TEV protease. At the first stage, all the possible mutations were predicted using online tools such as PoPMuSiC and Eris servers, in which five mutations include N23F, N23L, Q74L, Q74V, and Q74I were suggested for further studies. In the next step, the three dimensional structure of the wild type (WT) and the best mutations were subjected to molecular dynamic simulations to evaluate the dynamic behaviour of the obtained structures. The selected mutation was introduced into the structure using site-directed mutagenesis and expressed in Escherichia coli BL21DE3. After purification, solubility and activity of the purified mutant and WT-TEV proteases were assayed. Findings / Results: By considering the analysis of various factors such as structural and solubility properties, one mutant, N23F, was selected for in vitro studies which led to a 1.5 times increase in the solubility compared to the WT while its activity was decreased somewhat. Conclusion and implications: We propose N23F mutation, according to computational and experimental analyses for TEV proteases which resulted in a 150% increase in solubility compared to the WT.
机译:背景论:烟草蚀刻病毒(TEV)蛋白酶是具有高序列特异性的蛋白酶,可用于融合蛋白的切割。对该酶的主要限制是其相对较差的溶解度。该研究旨在通过在线工具和分子动力学模拟来研究一些建议突变的影响,以改善TEV蛋白酶体外的溶解度。实验方法:我们设计了一个合理的多阶段方法,以确定TEV蛋白酶的溶解突变。在第一阶段,使用诸如PopMusic和Eris服务器的在线工具预测所有可能的突变,其中提出了五个突变,其中五个突变包括N23F,N23L,Q74L,Q74V和Q74I进行进一步研究。在下一步骤中,对野生型(WT)的三维结构和最佳突变进行分子动态模拟,以评估所获得的结构的动态行为。使用位点定向诱变将所选突变引入结构中,并在大肠杆菌BL21DE3中表达。纯化后,测定纯化的突变体和WT-TEV蛋白酶的溶解度和活性。结果/结果:通过考虑对各种因素的分析,如结构和溶解性特性,选择一个突变体N23F,用于体外研究,其导致与WT相比溶解度增加1.5倍,而其活性在某种程度上减少了其活性。结论和含义:我们提出了N23F突变,根据TEV蛋白酶的计算和实验分析,与WT相比,溶解度增加了150%。

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