重庆邮电大学生物信息学院,大数据生物智能重庆市重点实验室,重庆 400065
Tel:
Q6;R592
国家自然科学基金(32000884)和重庆市自然科学基金(cstc2020jcyj-msxmX0653)资助项目。
Chongqing Key Laboratory on Big Data for Bio Intelligence, Chongqing University of Posts and Telecommunications, Chongqing 400065, China
This work was supported by grants from The National Natural Science Foundation of China (32000884) and the Natural Science Foundation of Chongqing (cstc2020jcyj-msxmX0653).
目的 转甲状腺素蛋白 (transthyretin, TTR) 对阿尔茨海默病 (Alzheimer’s disease, AD) 具有神经保护作用, 这种保护作用表现在TTR能抑制β淀粉样蛋白(amyloid beta protein,Aβ)的病理性聚集。本工作将从分子层面上探究TTR与Aβ的作用机制,揭示TTR对AD的神经保护作用。方法 蛋白质-蛋白质对接用于探究不同结构形式的TTR与Aβ的作用模式,并运用分子动力学模拟方法来探究二者相互作用的动态过程。结果 TTR四聚体及单体均能与Aβ单体作用,TTR四聚体的甲状腺素结合通道是Aβ单体的主要结合部位。此外,TTR四聚体的EF螺旋、EF loop同样能够结合Aβ单体。当TTR四聚体解离后,TTR单体的内部片层疏水部位暴露,该部位对Aβ单体具有较强的亲和力。TTR与Aβ聚集体作用,由于TTR单体与Aβ聚集体均为富含β折叠的结构,使得二者能够共聚集形成聚合度更高的聚集体,从而降低Aβ聚集体的细胞毒性。结论 TTR四聚体和单体通过“扣押”Aβ单体来抑制Aβ的聚集,TTR单体与Aβ聚集体形成高聚合度复合物来降低Aβ聚集体的细胞毒性。本工作为基于TTR神经保护作用的抗AD药物设计和发现提供了重要的理论依据。
Objective It was reported that the transthyretin (TTR) has a neuroprotective effect on Alzheimer’s disease (AD), which is manifested by the ability of TTR to inhibit the pathological aggregation of amyloid beta protein (Aβ). In this work, we investigated the mechanism of the interactions between TTR and Aβ at the molecular level to reveal the neuroprotective effect of TTR on AD.Methods Protein-protein docking was used to explore the models of interaction between different structural forms of TTR and Aβ, and molecular dynamics simulation was further applied to investigate the dynamic process of the interaction between the two.Results Both TTR tetramer and monomer can interact with Aβ monomer, and the thyroxine-binding channel of TTR tetramer is the main binding site of Aβ monomer. In addition, the EF helix and EF loop of TTR tetramer were also able to bind Aβ monomer. When the TTR tetramer dissociates, the hydrophobic site of the internal TTR monomer is exposed, which has a strong affinity for Aβ monomer. For the interaction between Aβ aggregates and TTR, a higher degree of aggregation can be formed between TTR monomer and Aβ aggregates due to the β-sheet-rich property of TTR monomer and Aβ aggregates, which may therefore reduce the cytotoxicity of Aβ aggregates.Conclusion Both TTR tetramer and monomer can inhibit Aβ aggregation by “sequestering” Aβ monomer, while TTR monomer can reduce the cytotoxicity of Aβ aggregates by forming large co-aggregation with Aβ aggregates. This work can provide an important theoretical basis for the design and discovery of anti-AD drugs based on the neuroprotective effects of TTR.
周双艳,黄垚心,李鑫,白佳慧,袁帅.转甲状腺素蛋白抑制β淀粉样蛋白聚集的分子机制研究[J].生物化学与生物物理进展,2024,51(3):633-646
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