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Structural Analysis of Recombinant Human Preproinsulins by Structure Prediction Molecular Dynamics and Protein-Protein Docking

机译:通过结构预测分子动力学和蛋白质-蛋白对接的重组人胰岛素原结构分析

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摘要

More effective production of human insulin is important, because insulin is the main medication that is used to treat multiple types of diabetes and because many people are suffering from diabetes. The current system of insulin production is based on recombinant DNA technology, and the expression vector is composed of a preproinsulin sequence that is a fused form of an artificial leader peptide and the native proinsulin. It has been reported that the sequence of the leader peptide affects the production of insulin. To analyze how the leader peptide affects the maturation of insulin structurally, we adapted several in silico simulations using 13 artificial proinsulin sequences. Three-dimensional structures of models were predicted and compared. Although their sequences had few differences, the predicted structures were somewhat different. The structures were refined by molecular dynamics simulation, and the energy of each model was estimated. Then, protein-protein docking between the models and trypsin was carried out to compare how efficiently the protease could access the cleavage sites of the proinsulin models. The results showed some concordance with experimental results that have been reported; so, we expect our analysis will be used to predict the optimized sequence of artificial proinsulin for more effective production.
机译:人胰岛素的更有效生产很重要,因为胰岛素是用于治疗多种类型糖尿病的主要药物,并且因为许多人患有糖尿病。当前的胰岛素生产系统基于重组DNA技术,表达载体由前胰岛素原序列组成,该序列是人工前导肽和天然胰岛素原的融合形式。据报道,前导肽的序列影响胰岛素的产生。为了分析前导肽如何在结构上影响胰岛素的成熟,我们采用13种人工胰岛素原序列对计算机模拟进行了改编。对模型的三维结构进行了预测和比较。尽管它们的序列几乎没有差异,但是预测的结构还是有所不同。通过分子动力学模拟精炼结构,并估算每个模型的能量。然后,在模型和胰蛋白酶之间进行蛋白质-蛋白质对接,以比较蛋白酶可如何有效地进入胰岛素原模型的切割位点。结果表明与已报道的实验结果相符。因此,我们希望我们的分析可用于预测人工胰岛素的最优化序列,以实现更有效的生产。

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