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首页> 外文期刊>The Journal of Chemical Physics >Time-resolved small-angle neutron scattering during heat-induced fibril formation from bovine beta-lactoglobulin
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Time-resolved small-angle neutron scattering during heat-induced fibril formation from bovine beta-lactoglobulin

机译:β-乳球蛋白热诱导原纤维形成过程中的时间分辨小角中子散射

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摘要

We study in situ the kinetics of heat-induced fibrilar aggregation of bovine beta-lactoglobulin at pH 2.0 and 80 degrees C for the first time by time-resolved small-angle neutron scattering. A simple model for the scattering from a mixture of monodisperse charged spheres (monomeric beta-lactoglobulin) interacting via a screened electrostatic repulsion and noninteracting long cylinders (protein fibrils) is used to describe the data. The experimental data are fitted to the model and the concentration of the monomeric protein and the protein incorporated in fibrils are obtained as adjustable parameters. Thus, a simple physical model allows the determination of realistic kinetic parameters during fibrilar protein aggregation. This result constitutes an important step in understanding the process of irreversible fibrilar aggregation of proteins.
机译:我们通过时间分辨小角度中子散射首次在pH 2.0和80℃下原位研究了牛β-乳球蛋白的热诱导纤维状聚集的动力学。一个简单的模型用于描述通过筛选的静电排斥和非相互作用的长圆柱体(蛋白质原纤维)相互作用的单分散带电球体(单体β-乳球蛋白)混合物的散射。将实验数据拟合到模型,并且获得单体蛋白质和掺入原纤维中的蛋白质的浓度作为可调参数。因此,简单的物理模型可以确定纤维蛋白聚集过程中的实际动力学参数。该结果构成了理解蛋白质不可逆纤维状聚集过程的重要步骤。

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