首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Effect of altered solution conditions on tau conformational dynamics: Plausible implication on order propensity and aggregation
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Effect of altered solution conditions on tau conformational dynamics: Plausible implication on order propensity and aggregation

机译:改变解决方案条件对TAU构象动态的影响:秩序对秩序倾向和聚集的影响

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摘要

Intrinsically disordered protein tau plays a central role in maintaining neuronal network by stabilizing microtubules in axon. Tau reportedly possesses random coil architecture, which is largely inert to alteration in solution conditions. However, the presence of transient compact conformers and residual structure has been evident from previous reports. Also, during Alzheimer's disease, misfolded tau detaches from microtubule and forms ordered filaments, which is the hallmark of the disease. Despite its fundamental role in neuronal physiology and in pathological cascade of several fatal neurodegenerative diseases, tau conformational dynamics remains poorly understood. In the present study, we have explored the effect of ionic strength, temperature and solvent polarity on tau40 conformational preferences using ion mobility mass spectrometry. Investigation of collision cross section revealed that while low ionic strength, elevated temperature and reduced solvent polarity mostly induced partial collapse in tau40 conformers, higher ionic strength led to an expansion of the molecule. Limited proteolysis identified segments of tau40 projection domain and proline-rich region having high order propensity and a C-terminal region having vulnerability for further expansion at altered solution conditions. The high susceptibility for disorder-to-order transition in the above region of the protein might have crucial implication on its role as microtubule spacers, and in cellular signaling cascade. The conformational adaptation of tau40 did not enhance the heparin-induced aggregation proclivity of the protein. Nevertheless, the observed correlation of electrostatic interaction with fibrillation propensity of tau40 might indicate plausible link between hyperphosphorylation at diseased state with tau conformation and self-assembly.
机译:本质无序的蛋白质Tau在通过稳定在轴突中的微管维持神经元网络方面发挥着核心作用。据报道,TAU具有随机线圈架构,这在很大程度上惰性地改变了解决方案条件。然而,从先前的报告中明显存在瞬态紧凑型体和残留结构。此外,在阿尔茨海默病期间,错误的Tau从微管和形式的有序细丝脱离,这是疾病的标志。尽管在神经元生理学和几种致命神经变性疾病的病理级联中存在根本作用,但Tau构象动态仍然明白。在本研究中,我们使用离子迁移率质谱法探讨了离子强度,温度和溶剂极性对Tau40构象偏好的影响。碰撞横截面的研究表明,虽然低离子强度,升高的温度和降低的溶剂极性大多诱导TAU40整形剂中的部分塌陷,较高的离子强度导致分子的膨胀。有限的蛋白水解鉴定的TAU40投影结构域和富含脯氨酸的区域,具有高阶倾向和具有脆弱性的C末端区域,在改变的溶液条件下进一步膨胀。在蛋白质的上述区域中对秩序秩序过渡的高易感性可能对其作为微管间隔物和蜂窝信号传导级联的作用至关重要。 TAU40的构象适应并未增强蛋白质的肝素诱导的聚集倾向。然而,观察到静电相互作用与TAU40的颤动倾向的相关性可能表明具有TAU构象和自组装的患病状态的高磷酸化之间的合理联系。

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