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密度梯度柱极限附近的大分子分布。在糖蛋白分离和分级分离中的一些应用。

Macromolecular distribution near the limits of density-gradient columns. Some applications to the separation and fractionation of glycoproteins.

作者信息

Creeth M J, Horton J R

出版信息

Biochem J. 1977 Mar 1;161(3):449-63. doi: 10.1042/bj1610449a.

Abstract
  1. Expressions are derived for the distribution at density-gradient equilibrium of macromolecules whose densities are (a) close to the values characterizing the solution limits or (b) outside the span of the gradient. 2. Density-distribution predicted by the expressions agree with those obtained by rigorous methods. 3. The distribution equations are applied to hypothetical mixtures of proteins and glycoproteins in commonly used density-gradient media to simulate separation and fractionation conditions. 4. It is shown that CsBr, although less efficient than CsCl for fractionation, is nevertheless adequate for most purposes; in analytical experiments it may often have advantages over CsCl. Limitations on the use of LiBr are explored. 5. An expression is derived which allows the variance of the partial specific volume of the macromolecular component to be determined from the variance of the buoyant density. It is shown that the relative resolving powers of different salts is expressed by their values of the quantity (formula: see text). 6. The equations are applied to a well-characterized glycoprotein preparation at equilibrium in CsCl and in Cs2SO4:it is shown that the much wider distribution in CsCl than in Cs2SO4 is explicable in terms of the variance in buoyant density and the solvation properties of the salts. 7. Limitations of the expressions arise when dispersity in density is represented by a low apparent molecular weight; realistic simulations can then only be obtained when the component is fully banded.
摘要
  1. 推导了在密度梯度平衡时,密度为(a)接近表征溶液极限的值或(b)在梯度范围之外的大分子的分布表达式。2. 由这些表达式预测的密度分布与通过严格方法获得的结果一致。3. 将分布方程应用于常用密度梯度介质中蛋白质和糖蛋白的假设混合物,以模拟分离和分级条件。4. 结果表明,CsBr虽然在分级方面不如CsCl有效,但对于大多数目的来说已经足够;在分析实验中,它往往比CsCl具有优势。探讨了LiBr使用的局限性。5. 推导了一个表达式,该表达式允许根据浮力密度的方差来确定大分子组分的偏比容的方差。结果表明,不同盐的相对分辨能力由它们的量值(公式:见正文)表示。6. 将这些方程应用于在CsCl和Cs2SO4中达到平衡的一种特征明确的糖蛋白制剂:结果表明,CsCl中的分布比Cs2SO4中的分布宽得多,这可以根据浮力密度的方差和盐的溶剂化性质来解释。7. 当密度分散性由低表观分子量表示时,这些表达式存在局限性;只有当组分完全形成条带时,才能获得真实的模拟结果。

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