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通过对其毛细管区带电泳(CZE)测定的电泳迁移率进行建模,估算具有二级α-螺旋的全L-α-二十肽及其全反转D-反式-α-二十肽的全局链特性。

Global chain properties of an all l-α-eicosapeptide with a secondary α-helix and its all retro d-inverso-α-eicosapeptide estimated through the modeling of their CZE-determined electrophoretic mobilities.

作者信息

Deiber Julio A, Piaggio Maria V, Peirotti Marta B

机构信息

Instituto de Desarrollo Tecnológico para la Industria Química (INTEC), Universidad Nacional del Litoral (UNL), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Santa Fe, Argentina.

出版信息

Electrophoresis. 2014 Mar;35(5):755-61. doi: 10.1002/elps.201300395. Epub 2013 Dec 2.

Abstract

Several global chain properties of relatively long peptides composed of 20 amino acid residues are estimated through the modeling of their experimental effective electrophoretic mobilities determined by CZE for 2 < pH < 6. In this regard, an all l-α-eicosapeptide, including a secondary α-helix (Peptide 1) and its all retro d-inverso-α-eicosapeptide (Peptide 2), are considered. Despite Peptides 1 and 2 are isomeric chains, they do not present similar global conformations in the whole range of pH studied. These peptides may also differ in the quality of BGE components chain interactions depending on the pH value. Three Peptide 1 fragments (Peptides 3, 4, and 5) are also analyzed in this framework with the following purposes: (i) visualization of the effects of initial and final strands at each side of the α-helix on the global chain conformations of Peptide 1 at different pHs and (ii) analysis of global chain conformations of Peptides 1 and 2, and Peptide 1 fragments in relation to their pI values. Also, the peptide maximum and minimum hydrations predicted by the model, compatible with experimental effective electrophoretic mobilities at different pHs, are quantified and discussed, and needs for further research concerning chain hydration are proposed. It is shown that CZE is a useful analytical tool for peptidomimetic designs and purposes.

摘要

通过对由20个氨基酸残基组成的相对较长肽段在2 < pH < 6范围内由毛细管区带电泳(CZE)测定的实验有效电泳迁移率进行建模,估算了它们的几个全局链性质。在这方面,考虑了一种全l-α-二十肽,包括一个二级α-螺旋(肽1)及其全反向d-反向-α-二十肽(肽2)。尽管肽1和肽2是异构链,但在整个研究的pH范围内,它们并不呈现相似的全局构象。这些肽在缓冲液(BGE)成分与链的相互作用质量上也可能因pH值而异。在这个框架下,还分析了三个肽1片段(肽3、肽4和肽5),目的如下:(i)观察α-螺旋两侧的起始链和终末链对肽1在不同pH下全局链构象的影响;(ii)分析肽1和肽2以及肽1片段的全局链构象与其等电点(pI)值的关系。此外,还对模型预测的与不同pH下实验有效电泳迁移率相符的肽段最大和最小水合作用进行了量化和讨论,并提出了关于链水合作用进一步研究的需求。结果表明,CZE是用于拟肽设计和相关目的的一种有用分析工具。

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