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首页> 外文期刊>Macromolecules >Tracer diffusion of proteins in DNA solutions. 2. Green fluorescent protein in crowded DNA solutions
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Tracer diffusion of proteins in DNA solutions. 2. Green fluorescent protein in crowded DNA solutions

机译:示踪剂在DNA溶液中的蛋白质扩散。 2.拥挤的DNA溶液中的绿色荧光蛋白

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摘要

Proteins diffuse to their sites of action within cells in a crowded, strongly interacting environment of nucleic acids and other macromolecules. To investigate the dynamics of a typical globular protein in such an environment, we used fluorescence photobleaching recovery to measure the probe diffusion of green fluorescent protein (GFP) in dilute to highly concentrated aqueous solutions of glycerol, Ficoll 70, and persistence-length calf thymus DNA. In glycerol, GFP accurately obeyed the Stokes-Einstein equation that relates diffusion coefficient to solution viscosity. In concentrated Ficoll 70, GFP diffused moderately faster than predicted from viscosity, demonstrating the phenomenon of microviscosity in a molecularly heterogeneous solution. In DNA, the diffusion coefficient of GFP was markedly greater than predicted from the Stokes-Einstein equation, with deviations increasing at lower ionic strength. This behavior reflects microviscosity, Coulombic interactions, and the dynamics of probe diffusion in DNA solutions that had undergone the ordinary-extraordinary transition, which we demonstrated by dynamic Light scattering. [References: 30]
机译:在核酸和其他大分子拥挤,相互作用强烈的环境中,蛋白质扩散到细胞内的作用位点。为了研究这种环境中典型球状蛋白的动力学,我们使用了荧光光漂白恢复法来测量绿色荧光蛋白(GFP)在甘油,Ficoll 70和持久性小牛胸腺的稀溶液中的扩散。脱氧核糖核酸。在甘油中,GFP准确地遵循了Stokes-Einstein方程,该方程将扩散系数与溶液粘度相关联。在浓缩的Ficoll 70中,GFP的扩散速度要比根据粘度预测的速度适中,这证明了分子异质溶液中的微粘性现象。在DNA中,GFP的扩散系数明显大于Stokes-Einstein方程所预测的扩散系数,并且在较低的离子强度下偏差会增加。此行为反映了微粘度,库仑相互作用以及探针在DNA溶液中扩散的动力学,该溶液已经经历了非凡的过渡,我们通过动态光散射证明了这一点。 [参考:30]

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