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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterizing Solution Surface Loop Conformational Flexibility of the GM2 Activator Protein
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Characterizing Solution Surface Loop Conformational Flexibility of the GM2 Activator Protein

机译:表征GM2激活蛋白的溶液表面环构象柔性

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GM2AP has a β-cup topology with numerous X-ray structures showing multiple conformations for some of the surface loops, revealing conformational flexibility that may be related to function, where function is defined as either membrane binding associated with ligand binding and extraction or interaction with other proteins. Here, site-directed spin labeling (SDSL) electron paramagnetic resonance (EPR) spectroscopy and molecular dynamic (MD) simulations are used to characterize the mobility and conformational flexibility of various structural regions of GM2AP. A series of 10 single cysteine amino acid substitutions were generated, and the constructs were chemically modified with the methanethiosulfonate spin label. Continuous wave (CW) EPR line shapes were obtained and subsequently simulated using the microscopic order macroscopic disorder (MOMD) program. Line shapes for sites that have multiple conformations in the X-ray structures required two spectral components, whereas spectra of the remaining sites were adequately fit with single-component parameters. For spin labeled sites H26C and I66C, spectra were acquired as a function of temperature, and simulations provided for the determination of thermodynamic parameters associated with conformational change. Binding to GM2 ligand did not alter the conformational flexibility of the loops, as evaluated by EPR and NMR spectroscopies. These results confirm that the conformational flexibility observed in the surface loops of GM2AP crystals is present in solution and that the exchange is slow on the EPR time scale (>ns). Furthermore, MD simulation results are presented and agree well with the conformational heterogeneity revealed by SDSL.
机译:GM2AP具有一个具有多个X射线结构的β杯拓扑结构,这些X射线结构显示了某些表面环的多种构象,从而揭示了可能与功能相关的构象柔性,其中功能定义为与配体结合和提取相关的膜结合或与之相互作用。其他蛋白质。在这里,使用定点自旋标记(SDSL)电子顺磁共振(EPR)光谱和分子动力学(MD)模拟来表征GM2AP各个结构区域的迁移率和构象柔性。产生了一系列的10个单半胱氨酸氨基酸取代,并用甲硫代磺酸盐自旋标记进行了化学修饰。获得了连续波(CW)EPR线形,然后使用微观级宏观无序(MOMD)程序进行了模拟。 X射线结构中具有多个构象的位点的线形需要两个光谱分量,而其余位点的光谱则足以与单分量参数拟合。对于自旋标记的位点H26C和I66C,获得了随温度变化的光谱,并提供了用于确定与构象变化相关的热力学参数的模拟。通过EPR和NMR光谱分析,与GM2配体的结合不会改变环的构象柔性。这些结果证实在溶液中存在在GM2AP晶体的表面环中观察到的构象柔韧性,并且在EPR时间尺度(> ns)上交换缓慢。此外,提出了MD仿真结果,并与SDSL揭示的构象异质性非常吻合。

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