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蛋白质晶体中二元扩散的量化

Quantification of binary diffusion in protein crystals.

作者信息

Cvetkovic Aleksandar, Picioreanu Cristian, Straathof Adrie J J, Krishna Rajamani, van der Wielen Luuk A M

机构信息

Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.

出版信息

J Phys Chem B. 2005 Jun 2;109(21):10561-6. doi: 10.1021/jp050289c.

Abstract

The use of confocal laser scanning microscopy for visualization and quantification of binary diffusion within anisotropic porous material is described here for the first time. The dynamics of adsorption profiles of dianionic fluorescein, zwitterionic rhodamine B, and their mixture in the cationic native orthorhombic lysozyme crystal were subsequently analyzed. All data could be described by a classical pore diffusion model. There was no change in the adsorption characteristics, but diffusion decreased with the introduction of a second solute in the solution. It was found that diffusion is determined by the combination of steric and electrostatic interactions,while adsorption is dependent on electrostatic and hydrophobic interactions. Thus, it was established that the outcome of binary transport depends on the solute, protein, and crystal characteristics.

摘要

本文首次描述了利用共聚焦激光扫描显微镜对各向异性多孔材料内的二元扩散进行可视化和定量分析。随后分析了双阴离子荧光素、两性离子罗丹明B及其混合物在阳离子天然正交晶型溶菌酶晶体中的吸附曲线动态。所有数据均可用经典的孔扩散模型来描述。吸附特性没有变化,但随着溶液中第二种溶质的引入,扩散速率降低。研究发现,扩散由空间位阻和静电相互作用共同决定,而吸附则取决于静电和疏水相互作用。因此,可以确定二元传输的结果取决于溶质、蛋白质和晶体的特性。

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