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Analysis of steric partition behavior of molecules in membranes using statistical physics. Application to gel chromatography and electrophoresis.

机译:使用统计物理学分析膜中分子的空间分配行为。应用于凝胶色谱和电泳。

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摘要

The principles of statistical physics are used to formulate general expressions for the steric partition behavior of molecules in both random and ordered membrane structures that may be applied to any shape of the solute and/or the volume-excluding element of the membrane. These expressions fully define partitioning in terms of the volume excluded to point molecules and to finite-sized molecules. The mean effective exclusion volume for a molecule is calculated as a function of a global interaction energy, which varies with position, conformation, and orientation of the molecule. It allows consideration of electrostatic and other nonsteric factors. To test the model, specific partition functions are derived for several simple geometries describing the membrane and solute. Frequently, the derived expressions agree with past analyses; however, a new expression describing partitioning within an random network of fibers is derived. It agrees with past results only in the limit of low exclusion volumes. With greater volume exclusions, past results greatly overestimate the partition function. It is applied to gel electrophoresis and chromatography and survives testing with available experimental data. Unlike past analyses, it predicts nonlinear Ferguson plots for agarose gel electrophoresis. In addition, an analytical expression predicting the minimum radius of a sphere excluded from a random fiber matrix is derived, tested, and found to agree with experimental data.
机译:统计物理学原理用于为分子在无规和有序膜结构中的空间分配行为制定一般表达式,这些结构可应用于任何形状的溶质和/或膜中不包括体积的元素。这些表达完全根据点分子和有限大小分子的体积定义了分区。分子的平均有效排斥体积是根据整体相互作用能计算的,该相互作用能随分子的位置,构象和方向而变化。它允许考虑静电和其他非空间因素。为了测试模型,针对描述膜和溶质的几种简单几何结构导出了特定的分区函数。通常,派生的表达式与过去的分析一致。然而,得到了一个新的表达式,描述了在光纤的随机网络中进行分区的过程。仅在排除体积较小的情况下才与过去的结果一致。对于更大的体积排除,过去的结果大大高估了分区功能。它可用于凝胶电泳和色谱分析,并在可用的实验数据进行测试后仍可幸存。与过去的分析不同,它可以预测琼脂糖凝胶电泳的非线性弗格森图。此外,推导,测试并预测了从随机纤维基质中排除的最小球体半径的解析表达式,并与实验数据相符。

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