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通过烧结入口流场-流分馏法进行快速蛋白质分离和扩散系数测量。

Rapid protein separation and diffusion coefficient measurement by frit inlet flow field-flow fractionation.

作者信息

Liu M K, Li P, Giddings J C

机构信息

Department of Chemistry, University of Utah, Salt Lake City 84112.

出版信息

Protein Sci. 1993 Sep;2(9):1520-31. doi: 10.1002/pro.5560020917.

Abstract

In this study three flow field-flow fractionation (flow FFF) channels are utilized for the separation of proteins and for the simultaneous measurement of their translational diffusion coefficients, D. One channel has a traditional sample inlet, whereas the other two incorporate a frit inlet design that permits more convenient and rapid sample introduction. The dependence of retention time on D, which leads to differential elution and the opportunity to measure D for protein peaks purified by the flow FFF process, is described theoretically and examined experimentally. Factors affecting band broadening, resolution, and optimization are also examined. The separation of proteins is achieved in the time range 4-20 min. Partial resolution is achieved in multiple runs requiring 2 min each. Values of D calculated from retention times are reported for 15 proteins. These include two protein dimers (bovine serum albumin and gamma-globulin) not ordinarily accessible to measurement. The D values from the three channels are compared with one another and with literature data. Reasonable consistency (within 3-4%) is found. High-speed repetitive runs can be used to acquire multiple values of D in time intervals as short as 1 min.

摘要

在本研究中,使用了三个流场-流分级(flow FFF)通道来分离蛋白质,并同时测量它们的平移扩散系数D。一个通道具有传统的样品入口,而另外两个采用了烧结板入口设计,允许更方便、快速地引入样品。从理论上描述了保留时间对D的依赖性,这种依赖性导致了差异洗脱以及测量通过流场-流分级过程纯化的蛋白质峰的D的机会,并进行了实验研究。还研究了影响谱带展宽、分辨率和优化的因素。蛋白质的分离在4-20分钟的时间范围内完成。在每次需要2分钟的多次运行中实现了部分分离。报告了从保留时间计算出的15种蛋白质的D值。其中包括两种通常无法测量的蛋白质二聚体(牛血清白蛋白和γ-球蛋白)。将三个通道的D值相互比较,并与文献数据进行比较。发现了合理的一致性(在3-4%以内)。高速重复运行可用于在短至1分钟的时间间隔内获取多个D值。

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