Bjellqvist B, Pasquali C, Ravier F, Sanchez J C, Hochstrasser D
University Hospital of Geneva, Switzerland.
Electrophoresis. 1993 Dec;14(12):1357-65. doi: 10.1002/elps.11501401209.
A new nonlinear immobilized pH gradient (IPG) is proposed as the first dimension for two-dimensional electrophoresis. In comparison to conventional carrier ampholyte techniques, it offers better resolution and greater reproducibility whilst allowing application of higher protein loads. Furthermore, we have checked and supplemented existing data on pK values for the immobilized groups in the presence of 8M urea. This is necessary for pH gradients to be defined in a pH scale relevant to the focusing conditions such that spot positions can be related to amino acid compositions. The data will allow definition of pH scales for the temperature range 10-25 degrees C and for a pH range covering the major part of the nonlinear pH gradient. With the latter, focusing positions are neither influenced by urea concentration nor by the choice or the concentration of detergent or carrier ampholyte. Temperature is the only parameter affecting focusing reproducibility and here any changes in focusing positions can be related to the amino acid compositions of peptides.
一种新的非线性固定化pH梯度(IPG)被提议作为二维电泳的第一维。与传统的载体两性电解质技术相比,它具有更好的分辨率和更高的重现性,同时允许施加更高的蛋白质上样量。此外,我们已核对并补充了在8M尿素存在下固定基团的pK值的现有数据。这对于在与聚焦条件相关的pH标度中定义pH梯度是必要的,以便斑点位置能够与氨基酸组成相关联。这些数据将允许定义10至25摄氏度温度范围内以及覆盖非线性pH梯度主要部分的pH范围内的pH标度。对于后者,聚焦位置既不受尿素浓度影响,也不受去污剂或载体两性电解质的选择或浓度影响。温度是影响聚焦重现性的唯一参数,在此聚焦位置的任何变化都可与肽的氨基酸组成相关联。