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聚丙烯酰胺凝胶电泳

Polyacrylamide gel electrophoresis.

作者信息

Chrambach A, Rodbard D

出版信息

Science. 1971 Apr 30;172(3982):440-51. doi: 10.1126/science.172.3982.440.

Abstract

Polyacrylamide gel electrophoresis (PAGE) provides a versatile, gentle, high resolution method for fractionation and physical-chemical characterization of molecules on the basis of size, conformation, and net charge. The polymerization reaction can be rigorously controlled to provide uniform gels of reproducible, measurable pore size over a wide range. This makes it possible to obtain reproducible relative mobility (Rf) values as physical-chemical constants. Application and extension of Ogston's (random fiber) model for a gel allows for calculation of molecular volume, surface area, or radius, free mobility, and valence from RJ measurements at several gel concentrations, to calculate gel concentration for optimal resolution, and to predict behavior of macromolecules on gel gradients by computerized methods. Extension of classical moving boundary theory has been used to generate multiphasic buffer systems (providing selective stacking, unstacking, restacking, and preparative steady-state-stacking) with known operating characteristics for any pH at 0 degrees and 25 degrees C. A general strategy for isolation of macromolecules and for macromolecular mapping has been developed. Preparative scale PAGE is operational for milligram loads and feasible for gram quantities.

摘要

聚丙烯酰胺凝胶电泳(PAGE)提供了一种通用、温和且高分辨率的方法,用于基于分子大小、构象和净电荷对分子进行分离及物理化学表征。聚合反应可得到严格控制,从而在很宽的范围内提供具有可重现、可测量孔径的均匀凝胶。这使得获得作为物理化学常数的可重现相对迁移率(Rf)值成为可能。对奥格斯顿(随机纤维)凝胶模型的应用和扩展,使得能够通过在几种凝胶浓度下进行Rf测量来计算分子体积、表面积或半径、自由迁移率和化合价,计算最佳分辨率所需的凝胶浓度,并通过计算机方法预测大分子在凝胶梯度上的行为。经典移动边界理论的扩展已用于生成多相缓冲系统(提供选择性堆积、解堆积、重新堆积和制备性稳态堆积),这些系统在0℃和25℃下对于任何pH值都具有已知的操作特性。已经开发出一种用于分离大分子和进行大分子图谱分析的通用策略。制备规模的PAGE可处理毫克级的样品负载量,对于克级样品也是可行的。

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