Li Hao, Li Nannan, Tang Yingqi, Lee Jin Yong
Department of Chemistry, Sungkyunkwan University, Suwon 440-746, Korea.
ACS Chem Neurosci. 2021 Jun 2;12(11):1983-1988. doi: 10.1021/acschemneuro.1c00093. Epub 2021 May 12.
Self-assembly of hyperphosphorylated tau proteins into neurofibrillary tangles (NFT) is a hallmark of Alzheimer's disease. Previous studies suggest that the tau monomer may play an important role in NFTs formation in two general categories: inert (M) monomer and seed-competent (M) monomer. In the current study, replica-exchange molecular dynamics (REMD) were performed to investigate the effect of histidine tautomerism on the structures of a key fragment (R3) of tau protein and the transformation between different conformations. Based on the simulation results, we propose the histidine tautomerism hypothesis for tau protein misfolding. Histidine tautomerism greatly expands the conformational library, which triggers the emergence of conformations with higher aggregation tendency. Moreover, the conversions existing in both isomers and conformations may cause protein misfolding to occur more readily.
过度磷酸化的tau蛋白自组装成神经原纤维缠结(NFT)是阿尔茨海默病的一个标志。先前的研究表明,tau单体可能在NFT形成中发挥重要作用,主要分为两类:惰性(M)单体和具有种子活性(M)单体。在本研究中,进行了复制交换分子动力学(REMD)模拟,以研究组氨酸互变异构对tau蛋白关键片段(R3)结构以及不同构象之间转变的影响。基于模拟结果,我们提出了tau蛋白错误折叠的组氨酸互变异构假说。组氨酸互变异构极大地扩展了构象库,从而引发了具有更高聚集倾向的构象的出现。此外,异构体和构象中都存在的转变可能会使蛋白质更容易发生错误折叠。