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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Molecular dynamics simulation of the phosphorylation-induced conformational changes of a tau peptide fragment
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Molecular dynamics simulation of the phosphorylation-induced conformational changes of a tau peptide fragment

机译:磷酸化诱导tau肽片段构象变化的分子动力学模拟

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摘要

Aggregation of the microtubule associated protein tau (MAPT) within neurons of the brain is the leading cause of tauopathies such as Alzheimer's disease. MAPT is a phospho-protein that is selectively phosphorylated by a number of kinases in vivo to perform its biological function. However, it may become pathogenically hyperphosphorylated, causing aggregation into paired helical filaments and neurofibrillary tangles. The phosphorylation induced conformational change on a peptide of MAPT (htau225-250) was investigated by performing molecular dynamics simulations with different phosphorylation patterns of the peptide (pThr231 and/or pSer235) in different simulation conditions to determine the effect of ionic strength and phosphate charge. All phosphorylation patterns were found to disrupt a nascent terminal β-sheet pattern (226VAVVR230 and 244QTAPVP249), replacing it with a range of structures. The double pThr231/pSer235 phosphorylation pattern at experimental ionic strength resulted in the best agreement with NMR structural characterization, with the observation of a transient α-helix (239AKSRLQT245). PPII helical conformations were only found sporadically throughout the simulations.
机译:大脑神经元内微管相关蛋白tau(MAPT)的聚集是诸如阿尔茨海默氏病等疾病的主要原因。 MAPT是一种磷酸蛋白,可在体内被多种激酶选择性磷酸化以执行其生物学功能。但是,它可能会在病原体上过度磷酸化,从而导致聚集成对的螺旋状细丝和神经原纤维缠结。通过在不同的模拟条件下以不同的肽段磷酸化模式(pThr231和/或pSer235)进行分子动力学模拟,研究了MAPT(htau225-250)肽段的磷酸化诱导的构象变化,以确定离子强度和磷酸盐电荷的影响。发现所有磷酸化模式都破坏了新生的末端β-折叠模式(226VAVVR230和244QTAPVP249),并用一系列结构取代了它。观察到瞬时α螺旋(239AKSRLQT245),在实验离子强度下双pThr231 / pSer235磷酸化模式与NMR结构表征最佳吻合。 PPII螺旋​​构象仅在整个模拟过程中偶尔发现。

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