反相高效液相色谱法诱导两性螺旋肽结构。

Peptide research Pub Date : 1995-05-01
A W Purcell, M I Aguilar, R E Wettenhall, M T Hearn
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引用次数: 0

摘要

采用反相高效液相色谱法(RP-HPLC)研究了一系列基于氨基酸序列[KSEEQLA]n的两性多肽多聚物的保留行为。在5℃至85℃的操作温度范围内,确定了与这些肽的疏水接触面积和对固定化烃类配体的亲和力相关的结构保留参数。通过使用相似配体密度的正十八烷基(C18)-和正丁基(C4)-二氧化硅对肽保留行为的比较,评估了配体疏水性的影响。结果表明,配体介导的构象效应可以稳定肽的结构,这取决于色谱停留时间和肽的长度。特别是,对于较长的肽,更高度稳定的二级结构很明显。此外,相对于较短的C4配体,疏水性较强的C18配体更有效地稳定了肽的两性二级结构。通过对不同色谱条件下带宽依赖性的分析,获得了这些多肽多聚体相互作用动力学的附加信息。这些研究为疏水力在稳定肽结构中的作用提供了进一步的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Induction of amphipathic helical peptide structures in RP-HPLC.

The retention behavior of a series of amphipathic peptide multimers based on the amino acid sequence [KSEEQLA]n has been investigated using reversed-phase high performance liquid chromatography (RP-HPLC). Structure-retention parameters which are related to the hydrophobic contact area and affinity of these peptides for the immobilized hydrocarbonaceous ligands were determined over a range of operating temperatures between 5 degrees and 85 degrees C. The influence of ligand hydrophobicity was assessed by comparison of peptide retention behavior using an n-octadecyl (C18)- and an n-butyl (C4)-silica of similar ligand density. The results demonstrated that ligand-mediated conformational effects can stabilize peptide structure depending on the chromatographic residence time and peptide length. In particular, more highly stabilized secondary structures were evident for the longer peptides. In addition, the amphipathic secondary structure of the peptides were more effectively stabilized by the more hydrophobic C18 ligands relative to the shorter C4 ligands. Additional information on the interactive dynamics of these peptide multimers was obtained from analysis of bandwidth dependencies under the different chromatographic conditions. These studies provide further insight into the role which hydrophobic forces can play in the stabilization of peptide structures.

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