Molecular Modelling and Simulation Laboratory, Department of Molecular Biology and Biotechnology, Tezpur University, Tezpur, Assam, India.
J Biomol Struct Dyn. 2023;41(24):14702-14714. doi: 10.1080/07391102.2023.2193997. Epub 2023 Mar 24.
The first gene shown to be responsible for autosomal-dominant Parkinson's disease (PD) is the SNCA gene, which encodes for alpha synuclein (α-Syn). Recently, a novel heterozygous A30G mutation of the SNCA gene associated with familial PD has been reported. However, little research has been done on how the A30G mutation affects the structure of α-Syn. So, using atomistic molecular dynamics (MD) simulation, we demonstrate here the key structural characteristics of A30G α-Syn in the free monomer form and membrane associated state. From the MD trajectory analysis, the structure of A30G α-Syn was noticed to exhibit rapid conformational change, increase in backbone flexibility near the site of mutation and decrease in α-helical propensity. The typical torsion angles in residues (Val26 and Glu28) near the mutation site were observed to deviate significantly in A30G α-Syn. In the case of membrane bound A30G α-Syn, the regions that were submerged in the lipid bilayer (N-helix (3-37) and turn region (38-44)) found to contain higher helical content than the elevated region above the lipid surface. The bending angle in the helix-N and helix-C regions were noticed to be relatively higher in the free form of A30G α-Syn (38.5) than in the membrane bound form (37). The A30G mutation in α-Syn was predicted to have an impact on the stability and function of the protein based on G values obtained from the online servers. Our results demonstrate that the A30G mutation in α-Syn altered the protein's α-helical structure and slightly altered the membrane binding.Communicated by Ramaswamy H. Sarma.
第一个被证明与常染色体显性遗传帕金森病(PD)相关的基因是 SNCA 基因,该基因编码α-突触核蛋白(α-Syn)。最近,报道了一种与家族性 PD 相关的 SNCA 基因的新型杂合 A30G 突变。然而,对于 A30G 突变如何影响α-Syn 的结构,研究甚少。因此,我们使用原子分子动力学(MD)模拟,在此展示了游离单体形式和膜结合状态下 A30Gα-Syn 的关键结构特征。从 MD 轨迹分析中,注意到 A30Gα-Syn 的结构表现出快速构象变化,突变部位附近的骨架灵活性增加,α-螺旋倾向降低。在突变部位附近的残基(Val26 和 Glu28)中观察到典型的扭转角明显偏离 A30Gα-Syn。在膜结合的 A30Gα-Syn 中,被埋藏在脂质双层中的区域(N-螺旋(3-37)和转角区(38-44))发现比脂质表面上方的凸起区域含有更高的螺旋含量。在 A30Gα-Syn 的游离形式中,螺旋-N 和螺旋-C 区域的弯曲角度(38.5)被发现相对高于膜结合形式(37)。基于在线服务器获得的 G 值,预测 A30G 突变会影响α-Syn 蛋白的稳定性和功能。我们的结果表明,α-Syn 中的 A30G 突变改变了蛋白的α-螺旋结构,并略微改变了膜结合。由 Ramaswamy H. Sarma 传递。