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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >CAPILLARY ZONE ELECTROPHORESIS AND MICELLAR ELECTROKINETIC CHROMATOGRAPHY, WITH TAURODEOXYCHOLATE AS MICELLAR AGENT, OF PROTEIN KINASE A PEPTIDE SUBSTRATES
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CAPILLARY ZONE ELECTROPHORESIS AND MICELLAR ELECTROKINETIC CHROMATOGRAPHY, WITH TAURODEOXYCHOLATE AS MICELLAR AGENT, OF PROTEIN KINASE A PEPTIDE SUBSTRATES

机译:蛋白激酶肽肽底物的毛细管区带电泳和胶束电动色谱法,以牛磺酸环氧乙烷为胶束剂

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The separation of protein kinase A peptide substrates with the general formula -X-Arg-Arg-Ala-Ser-Y-, where X and Y may be the same or different amino aicds, was studied by capillary zone electrophoresis (CZE) and micellar electrokinetic chromatography (MEKC). Taurodeoxycholate (TDC) was used as the micellar agent. CZE was effective in separating a peptide series differing in the number of amino acids, but not for a series with a difference in the terminating amino acid. For the latter series, MEKC generally gave a higher selectivity, but some of the peptide pairs were more easily separated by CZE, demonstrating the complementary character of the two techniques. The efficiency of the MEKC system was typically < 50% of that of CZE, but its higher selectivity generally outbalanced the lower efficiency regarding resolution. The distribution of the peptides to the micelles was studied by determination of retention factors. Electrostatic and hydrophobic forces were found to be determining factors in the distribution; the most highly charged basic peptides were most heavily distributed; and for peptides with the same charge those containing more hydrophobic amino acids were more strongly distributed. The contribution of some structural features to the distribution degree was also determined. [References: 37]
机译:通过毛细管区带电泳(CZE)和胶束研究了通式为-X-Arg-Arg-Ala-Ser-Y-的蛋白激酶A肽底物的分离,其中X和Y可以相同或不同。电动色谱(MEKC)。牛磺脱氧胆酸盐(TDC)用作胶束剂。 CZE可有效分离氨基酸数量不同的肽系列,但不能分离末端氨基酸不同的肽系列。对于后一个系列,MEKC通常具有较高的选择性,但是某些肽对更容易被CZE分离,这证明了这两种技术的互补性。 MEKC系统的效率通常小于CZE的50%,但其较高的选择性通常会抵消分辨率较低的效率。通过确定保留因子研究了肽在胶束中的分布。发现静电力和疏水力是分布的决定性因素。电荷最高的碱性肽分布最重;对于电荷相同的肽,含有更多疏水氨基酸的肽分布更强。还确定了一些结构特征对分布程度的贡献。 [参考:37]

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