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首页> 外文期刊>The Journal of Chemical Physics >Effect of viscogens on the kinetic response of a photoperturbed allosteric protein
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Effect of viscogens on the kinetic response of a photoperturbed allosteric protein

机译:粘性原对光摄动变构蛋白动力学响应的影响

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摘要

By covalently binding a photoswitchable linker across the binding groove of the PDZ2 domain, a small conformational change can be photo-initiated that mimics the allosteric transition of the protein. The response of its binding groove is investigated with the help of ultrafast pump-probe IR spectroscopy from picoseconds to tens of microseconds. The temperature dependence of that response is compatible with diffusive dynamics on a rugged energy landscape without any prominent energy barrier. Furthermore, the dependence of the kinetics on the concentration of certain viscogens, sucrose, and glycerol, has been investigated. A pronounced viscosity dependence is observed that can be best fit by a power law, i.e., a fractional viscosity dependence. The change of kinetics when comparing sucrose with glycerol as viscogen, however, provides strong evidence that direct interactions of the viscogen molecule with the protein do play a role as well. This conclusion is supported by accompanying molecular dynamics simulations. (C) 2014 AIP Publishing LLC.
机译:通过跨PDZ2结构域的结合凹槽共价结合光可切换接头,可以光引发小的构象变化,从而模仿蛋白质的变构转变。借助超快泵浦探针红外光谱法(从皮秒到数十微秒)研究了其结合槽的响应。该响应的温度依赖性与崎energy的能源环境中的扩散动力学兼容,而没有任何明显的能量屏障。此外,已经研究了动力学对某些粘滞原,蔗糖和甘油浓度的依赖性。观察到明显的粘度依赖性,其可以通过幂定律最佳地拟合,即分数粘度依赖性。但是,当比较蔗糖和甘油作为粘稠剂时的动力学变化提供了有力的证据,表明粘稠剂分子与蛋白质的直接相互作用也起作用。这一结论得到了伴随的分子动力学模拟的支持。 (C)2014 AIP Publishing LLC。

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