Zhou Shuangyan, Shi Danfeng, Liu Xuewei, Liu Huanxiang, Yao Xiaojun
School of Pharmacy, Lanzhou University, Lanzhou 730000, China.
State Key Laboratory of Applied Organic Chemistry and Department of Chemistry, Lanzhou University, Lanzhou 730000, China.
Sci Rep. 2016 Feb 24;6:21804. doi: 10.1038/srep21804.
Recent studies uncovered a novel protective prion protein variant: V127 variant, which was reported intrinsically resistant to prion conversion and propagation. However, the structural basis of its protective effect is still unknown. To uncover the origin of the protective role of V127 variant, molecular dynamics simulations were performed to explore the influence of G127V mutation on two key processes of prion propagation: dimerization and fibril formation. The simulation results indicate V127 variant is unfavorable to form dimer by reducing the main-chain H-bond interactions. The simulations of formed fibrils consisting of β1 strand prove V127 variant will make the formed fibril become unstable and disorder. The weaker interaction energies between layers and reduced H-bonds number for V127 variant reveal this mutation is unfavorable to the formation of stable fibril. Consequently, we find V127 variant is not only unfavorable to the formation of dimer but also unfavorable to the formation of stable core and fibril, which can explain the mechanism on the protective role of V127 variant from the molecular level. Our findings can deepen the understanding of prion disease and may guide the design of peptide mimetics or small molecule to mimic the protective effect of V127 variant.
V127变体,据报道其本身对朊病毒的转化和传播具有抗性。然而,其保护作用的结构基础仍然未知。为了揭示V127变体保护作用的起源,进行了分子动力学模拟,以探究G127V突变对朊病毒传播的两个关键过程的影响:二聚化和纤维形成。模拟结果表明,V127变体通过减少主链氢键相互作用不利于形成二聚体。由β1链组成的已形成纤维的模拟表明,V127变体将使形成的纤维变得不稳定且无序。V127变体层间较弱的相互作用能和减少的氢键数量表明这种突变不利于形成稳定的纤维。因此,我们发现V127变体不仅不利于二聚体的形成,也不利于稳定核心和纤维的形成,这可以从分子水平解释V127变体保护作用的机制。我们的发现可以加深对朊病毒疾病的理解,并可能指导肽模拟物或小分子的设计,以模拟V127变体的保护作用。