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涉及氧化应激反应的无规卷曲蛋白质的微秒分子动力学模拟。

Microsecond molecular dynamics simulations of intrinsically disordered proteins involved in the oxidative stress response.

机构信息

Department of Biochemistry, The University of Western Ontario, London, Ontario, Canada.

出版信息

PLoS One. 2011;6(11):e27371. doi: 10.1371/journal.pone.0027371. Epub 2011 Nov 18.

DOI:10.1371/journal.pone.0027371
PMID:22125611
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3220680/
Abstract

Intrinsically disordered proteins (IDPs) are abundant in cells and have central roles in protein-protein interaction networks. Interactions between the IDP Prothymosin alpha (ProTα) and the Neh2 domain of Nuclear factor erythroid 2-related factor 2 (Nrf2), with a common binding partner, Kelch-like ECH-associated protein 1(Keap1), are essential for regulating cellular response to oxidative stress. Misregulation of this pathway can lead to neurodegenerative diseases, premature aging and cancer. In order to understand the mechanisms these two disordered proteins employ to bind to Keap1, we performed extensive 0.5-1.0 microsecond atomistic molecular dynamics (MD) simulations and isothermal titration calorimetry experiments to investigate the structure/dynamics of free-state ProTα and Neh2 and their thermodynamics of bindings. The results show that in their free states, both ProTα and Neh2 have propensities to form bound-state-like β-turn structures but to different extents. We also found that, for both proteins, residues outside the Keap1-binding motifs may play important roles in stabilizing the bound-state-like structures. Based on our findings, we propose that the binding of disordered ProTα and Neh2 to Keap1 occurs synergistically via preformed structural elements (PSEs) and coupled folding and binding, with a heavy bias towards PSEs, particularly for Neh2. Our results provide insights into the molecular mechanisms Neh2 and ProTα bind to Keap1, information that is useful for developing therapeutics to enhance the oxidative stress response.

摘要

无规蛋白(IDPs)在细胞中大量存在,在蛋白质-蛋白质相互作用网络中发挥核心作用。Prothymosin alpha(ProTα)与核因子红细胞 2 相关因子 2(Nrf2)的 Neh2 结构域之间的相互作用,与共同的结合伴侣 Kelch-like ECH-associated protein 1(Keap1)相互作用,对于调节细胞对氧化应激的反应至关重要。该途径的失调可导致神经退行性疾病、早衰和癌症。为了了解这两种无规蛋白与 Keap1 结合所采用的机制,我们进行了广泛的 0.5-1.0 微秒原子分子动力学(MD)模拟和等温滴定量热实验,以研究游离态 ProTα和 Neh2 的结构/动力学及其结合的热力学。结果表明,在它们的游离状态下,ProTα和 Neh2 都有形成结合态样β-转角结构的倾向,但程度不同。我们还发现,对于这两种蛋白质,结合基序之外的残基可能在稳定结合态样结构中发挥重要作用。基于我们的发现,我们提出无规 ProTα和 Neh2 与 Keap1 的结合是通过预形成的结构元件(PSEs)和偶联折叠和结合协同发生的,其中 PSEs 占很大比重,尤其是对于 Neh2。我们的研究结果提供了有关 Neh2 和 ProTα与 Keap1 结合的分子机制的见解,这对于开发增强氧化应激反应的治疗方法很有用。

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