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在经典和载体两性电解质背景电解质中的毛细管电泳在促性腺激素释放激素的分离和表征中的应用。

Capillary electrophoresis in classical and carrier ampholytes-based background electrolytes applied to separation and characterization of gonadotropin-releasing hormones.

机构信息

Institute of Organic Chemistry and Biochemistry, vvi, Academy of Sciences of the Czech Republic, Prague 6, Czech Republic.

出版信息

J Chromatogr A. 2012 Dec 7;1267:231-8. doi: 10.1016/j.chroma.2012.07.059. Epub 2012 Jul 27.

DOI:10.1016/j.chroma.2012.07.059
PMID:22883161
Abstract

Capillary zone electrophoresis (CZE) in classical buffer-based background electrolytes (BGEs) and carrier ampholytes-based capillary electrophoresis (CABCE) using narrow pH cuts of carrier ampholytes (CA) as constituents of quasi-isoelectric BGEs have been applied to separation and characterization of synthetic human and salmon gonadotropin-releasing hormones (GnRH) and their derivatives and fragments. The selectivity, separation efficiency, resolution and speed of CZE and CABCE analyses have been compared within a wide pH range of the BGEs (3.50-9.75) using two mixtures of structurally related GnRH peptides as model analytes. A baseline separation of mixture 1 (human GnRH and its three fragments) was achieved in CA-based BGEs at pH 3.5 and in both classical and CA-based BGEs within the pH range 7.00-9.75. Full separation of mixture 2 (salmon GnRH, its two fragments and human GnRH fragment) was obtained in both types of BGEs at acidic pH values 3.5 and 4.00 and at neutral pH 7.00. In addition to the separation of related GnRHs, their effective electrophoretic mobilities were determined and from the dependences of mobilities on pH, the isoelectric points (pI) of analyzed peptides were estimated. The pI values obtained by CABCE were in a good agreement with those determined by CZE in classical BGEs but in some cases rather different from those predicted by theoretical calculations.

摘要

毛细管区带电泳(CZE)在经典的基于缓冲液的背景电解质(BGE)和基于载体两性电解质的毛细管电泳(CABCE)中,使用载体两性电解质(CA)的窄 pH 范围作为准等电 BGE 的组成部分,已被应用于合成的人类和鲑鱼促性腺激素释放激素(GnRH)及其衍生物和片段的分离和表征。在 BGE 的宽 pH 范围内(3.50-9.75),使用两种结构相关的 GnRH 肽混合物作为模型分析物,比较了 CZE 和 CABCE 分析的选择性、分离效率、分辨率和速度。混合物 1(人类 GnRH 及其三个片段)在基于 CA 的 BGE 中在 pH 3.5 下,以及在经典和基于 CA 的 BGE 中在 pH 7.00-9.75 范围内实现了基线分离。混合物 2(鲑鱼 GnRH、其两个片段和人类 GnRH 片段)在两种类型的 BGE 中均在酸性 pH 值 3.5 和 4.00 以及中性 pH 值 7.00 下完全分离。除了分离相关的 GnRH 外,还测定了它们的有效电泳迁移率,并根据迁移率对 pH 的依赖性,估算了分析肽的等电点(pI)。通过 CABCE 获得的 pI 值与在经典 BGE 中通过 CZE 获得的值非常吻合,但在某些情况下与理论计算预测的值有很大差异。

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