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深入了解人整合素连接激酶激酶结构域在尿素诱导下的变性机制。

Mechanistic insights into the urea-induced denaturation of kinase domain of human integrin linked kinase.

机构信息

Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, New Delhi 110025, India.

Computational Mechanistic Chemistry and Drug Discovery, Department of Chemistry, Rhodes University, South Africa.

出版信息

Int J Biol Macromol. 2018 May;111:208-218. doi: 10.1016/j.ijbiomac.2017.12.164. Epub 2018 Jan 5.

Abstract

Integrin-linked kinase (ILK), a ubiquitously expressed intracellular Ser/Thr protein kinase, plays a major role in the oncogenesis and tumour progression. The conformational stability and unfolding of kinase domain of ILK (ILK) was examined in the presence of increasing concentrations of urea. The stability parameters of the urea-induced denaturation were measured by monitoring changes in [θ] (mean residue ellipticity at 222nm), difference absorption coefficient at 292nm (Δε) and intrinsic fluorescence emission intensity at pH7.5 and 25±0.1°C. The urea-induced denaturation was found to be reversible. The protein unfolding transition occurred in the urea concentration range 3.0-7.0M. A coincidence of normalized denaturation curves of optical properties ([θ], Δε and λ, the wavelength of maximum emission intensity) suggested that urea-induced denaturation of kinase domain of ILK is a two-state process. We further performed molecular dynamics simulation for 100ns to see the effect of urea on structural stability of kinase domain of ILK at atomic level. Structural changes with increasing concentrations of urea were analysed, and we observed a significant increase in the root mean square deviation, root mean square fluctuations, solvent accessible surface area and radius of gyration. A correlation was observed between in vitro and in silico studies.

摘要

整合素连接激酶(ILK)是一种普遍表达的细胞内丝氨酸/苏氨酸蛋白激酶,在肿瘤发生和肿瘤进展中起主要作用。在增加的脲浓度存在下,检查了整合素连接激酶(ILK)激酶结构域的构象稳定性和展开。通过监测在 pH7.5 和 25±0.1°C 时[θ](222nm 处的平均残基椭圆度)、292nm 处的差吸收系数(Δε)和固有荧光发射强度的变化来测量脲诱导的变性的稳定性参数。发现脲诱导的变性是可逆的。蛋白质展开过渡发生在 3.0-7.0M 的脲浓度范围内。光学性质的归一化变性曲线([θ]、Δε 和 λ,最大发射强度的波长)的一致性表明,ILK 激酶结构域的脲诱导变性是一个两态过程。我们进一步进行了 100ns 的分子动力学模拟,以在原子水平上观察脲对 ILK 激酶结构域结构稳定性的影响。分析了随着脲浓度增加的结构变化,我们观察到均方根偏差、均方根波动、溶剂可及表面积和回转半径显著增加。在体外和计算研究之间观察到相关性。

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