School of Biosciences and Technology, VIT University, Vellore, Tamil Nadu, India.
School of Biosciences and Technology, VIT University, Vellore, Tamil Nadu, India.
Adv Protein Chem Struct Biol. 2017;108:105-125. doi: 10.1016/bs.apcsb.2017.01.007. Epub 2017 Mar 23.
The association between depression and methylenetetrahydrofolate reductase (MTHFR) has been continually demonstrated in clinical studies, yet there are sparse resources available to build a relationship between the mutations associated with MTHFR and depression. The common mutations found to be associated with schizophrenia and MTHFR are A222V, E429A, and R594Q. Although abundant research on structural and functional effects caused by A222V mutation is available, very less amount of studies have been done on the other two mutants (E429A and R594Q). Hence in this study, a comparative analysis was carried out between the most common A222V mutation, a prevalent E429A mutation, and a less prevalent and less deleterious R594Q mutation. To predict structural rearrangements upon mutation, we proposed a computational pipeline using in silico prediction tools, molecular docking, and molecular dynamics simulation analysis. Since the association of flavin adenine dinucleotide (FAD) is important for the functioning of the protein, binding analysis between protein and the coenzyme was performed. This would enable us to understand the interference level of each mutation over FAD-binding activity. Consequently, we found that two mutations (A222V and E429A) showed lesser binding activity and structural deviations when compared to the native molecule and mutant R594Q. Comparatively, higher structural changes were observed with A222V mutant complex in comparison to other mutant complexes. Computational studies like this could render better insights into the structural changes in the protein and their relationship with the disease condition.
抑郁症与亚甲基四氢叶酸还原酶(MTHFR)之间的关联在临床研究中不断得到证实,但关于与 MTHFR 相关的突变与抑郁症之间的关系,可用的资源却很少。与精神分裂症和 MTHFR 相关的常见突变是 A222V、E429A 和 R594Q。虽然有大量关于 A222V 突变引起的结构和功能影响的研究,但对其他两个突变体(E429A 和 R594Q)的研究却很少。因此,在这项研究中,对最常见的 A222V 突变、常见的 E429A 突变和不太常见且不太有害的 R594Q 突变进行了比较分析。为了预测突变引起的结构重排,我们提出了一个使用计算预测工具、分子对接和分子动力学模拟分析的计算分析管道。由于黄素腺嘌呤二核苷酸(FAD)的结合对于蛋白质的功能很重要,因此对蛋白质与辅酶之间的结合进行了分析。这将使我们能够了解每个突变对 FAD 结合活性的干扰程度。结果表明,与天然分子和突变体 R594Q 相比,两种突变体(A222V 和 E429A)的结合活性和结构偏差较小。相比之下,与其他突变体复合物相比,A222V 突变体复合物观察到更高的结构变化。像这样的计算研究可以更好地了解蛋白质的结构变化及其与疾病状况的关系。