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联合使用计算机预测方法、分子动力学模拟和分子对接技术,对 FOXG1 错义突变进行分析:对 FoxG1 结构及其与 DNA 和 Bmi-1 蛋白相互作用的影响。

Combined in Silico Prediction Methods, Molecular Dynamic Simulation, and Molecular Docking of FOXG1 Missense Mutations: Effect on FoxG1 Structure and Its Interactions with DNA and Bmi-1 Protein.

机构信息

Laboratory of Molecular and Functional Genetics, Faculty of Science, Sfax University, Sfax, Tunisia.

Child Neurology Department, Hedi Chaker Hospital, Sfax, Tunisia.

出版信息

J Mol Neurosci. 2022 Aug;72(8):1695-1705. doi: 10.1007/s12031-022-02032-8. Epub 2022 Jun 2.

Abstract

FoxG1 encoded by FOXG1 gene is a transcriptional factor interacting with the DNA of targeted genes as well as with several proteins to regulate the forebrain development. Mutations in the FOXG1 gene have been shown to cause a wide spectrum of brain disorders, including the congenital variant of Rett syndrome. In this study, the direct sequencing of FOXG1 gene revealed a novel c.645C > A (F215L) variant in the patient P1 and a de novo known one c.755G > A (G252D) in the patient P2. To investigate the putative impact of FOXG1 missense variants, a computational pipeline by the application of in silico prediction methods, molecular dynamic simulation, and molecular docking approaches was used. Bioinformatics analysis and molecular dynamics simulation have demonstrated that F215L and G252D variants found in the DNA binding domain are highly deleterious mutations that may cause the protein structure destabilization. On the other hand, molecular docking revealed that F215L mutant is likely to have a great impact on destabilizing the protein structure and the disruption of the Bmi-1 binding site quite significantly. Regarding G252D mutation, it seems to abolish the ability of FoxG1 to bind DNA target, affecting the transcriptional regulation of targeted genes. Our study highlights the usefulness of combined computational approaches, molecular dynamic simulation, and molecular docking for a better understanding of the dysfunctional effects of FOXG1 missense mutations and their role in the etiopathogenesis as well as in the genotype-phenotype correlation.

摘要

FoxG1 由 FOXG1 基因编码,是一种转录因子,可与靶向基因的 DNA 以及几种蛋白质相互作用,从而调节前脑发育。FOXG1 基因的突变已被证明会导致广泛的脑疾病,包括先天性 Rett 综合征变异型。在这项研究中,FOXG1 基因的直接测序在患者 P1 中发现了一个新的 c.645C > A(F215L)变体,在患者 P2 中发现了一个新的 c.755G > A(G252D)已知变体。为了研究 FOXG1 错义变异的可能影响,应用了计算机预测方法、分子动力学模拟和分子对接方法的计算管道。生物信息学分析和分子动力学模拟表明,在 DNA 结合域中发现的 F215L 和 G252D 变体是高度有害的突变,可能导致蛋白质结构不稳定。另一方面,分子对接表明,F215L 突变体很可能极大地影响蛋白质结构的稳定性,并显著破坏 Bmi-1 结合位点。关于 G252D 突变,它似乎会削弱 FoxG1 与 DNA 靶标的结合能力,从而影响靶向基因的转录调控。我们的研究强调了结合计算方法、分子动力学模拟和分子对接的有用性,以更好地理解 FOXG1 错义突变的功能障碍效应及其在发病机制以及基因型-表型相关性中的作用。

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