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蛋白质构象与折叠研究中的凝胶电泳

Gel electrophoresis in studies of protein conformation and folding.

作者信息

Goldenberg D P, Creighton T E

出版信息

Anal Biochem. 1984 Apr;138(1):1-18. doi: 10.1016/0003-2697(84)90761-9.

Abstract

Electrophoresis through polyacrylamide gels is a useful method for distinguishing conformational states of proteins and analyzing the thermodynamic and kinetic properties of transitions between conformations. Although the relationship between protein conformation and electrophoretic mobility is quite complex, relative mobilities provide qualitative estimates of compactness. Conformational states which interconvert slowly on the time scale of the electrophoretic separation can often be resolved, and the rates of interconversion can be estimated. If the transitions are more rapid, then the electrophoretic mobility represents the equilibrium distribution of conformations. Protein unfolding transitions induced by urea are readily studied using slab gels containing a gradient of urea concentration perpendicular to the direction of electrophoresis. Protein applied across the top of such a gel migrates in the presence of continuously varying urea concentrations, and a profile of the unfolding transition is generated directly. Transitions induced by other agents could be studied using analogous gradient gels. Electrophoretic methods are especially suited for studying small quantities of protein, and complex mixtures, since the different components can be separated during the electrophoresis.

摘要

通过聚丙烯酰胺凝胶进行电泳是区分蛋白质构象状态以及分析构象之间转变的热力学和动力学性质的一种有用方法。尽管蛋白质构象与电泳迁移率之间的关系相当复杂,但相对迁移率可提供紧凑程度的定性估计。在电泳分离的时间尺度上缓慢相互转化的构象状态通常可以分辨出来,并且可以估计相互转化的速率。如果转变更快,那么电泳迁移率代表构象的平衡分布。使用含有垂直于电泳方向的尿素浓度梯度的平板凝胶很容易研究由尿素诱导的蛋白质解折叠转变。施加在这种凝胶顶部的蛋白质在不断变化的尿素浓度存在下迁移,并且直接生成解折叠转变的图谱。由其他试剂诱导的转变可以使用类似的梯度凝胶进行研究。电泳方法特别适合于研究少量蛋白质和复杂混合物,因为不同的组分可以在电泳过程中分离。

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