Grossman P D, Colburn J C, Lauer H H
Applied Biosystems, Santa Clara, California 95050.
Anal Biochem. 1989 May 15;179(1):28-33. doi: 10.1016/0003-2697(89)90195-4.
In this study an attempt is made to explore the effect of a peptide's size, charge, and hydrophobicity on its electrophoretic mobility (mu) as measured by free-solution capillary electrophoresis with the aim of developing a semiempirical model which incorporates these effects. The effects of peptide size (which is measured by the number of amino acids in the polypeptide chain (n] and charge on mu are independently determined by experiment in a single solvent system and combined to give the relationship (formula; see text) where the constant 5.23 X 10(-4) is postulated to depend on the solvent system used. The form of Eq. [A.1] was confirmed, and the values of the constants 5.23 X 10(-4) and 2.47 X 10(-5) were determined, by measuring the electrophoretic mobilities of 40 peptides varying in size from 3 to 39 amino acids and varying in charge from 0.33 to 14.0. Furthermore, the effect of noncharged neutral amino acids on mobility was investigated and shown to be present, but only as a minor perturbation on the effects of size and charge.
在本研究中,我们尝试通过自由溶液毛细管电泳来探究肽的大小、电荷和疏水性对其电泳迁移率(μ)的影响,目的是建立一个包含这些影响因素的半经验模型。肽的大小(通过多肽链中的氨基酸数量(n)来衡量)和电荷对μ的影响,在单一溶剂系统中通过实验独立确定,并结合起来得到关系式(公式;见原文),其中假设常数5.23×10⁻⁴取决于所使用的溶剂系统。通过测量40种大小从3到39个氨基酸且电荷从0.33到14.0不等的肽的电泳迁移率,证实了式[A.1]的形式,并确定了常数5.23×10⁻⁴和2.47×10⁻⁵的值。此外,还研究了不带电荷的中性氨基酸对迁移率的影响,结果表明这种影响存在,但只是对大小和电荷影响的轻微干扰。