首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Monitoring the hydrophilicity/hydrophobicity of amino acid side-chains in the non-polar and polar faces of amphipathic alpha-helices by reversed-phase and hydrophilic interaction/cation-exchange chromatography
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Monitoring the hydrophilicity/hydrophobicity of amino acid side-chains in the non-polar and polar faces of amphipathic alpha-helices by reversed-phase and hydrophilic interaction/cation-exchange chromatography

机译:通过反相和亲水相互作用/阳离子交换色谱法监测两亲性α-螺旋非极性和极性面上氨基酸侧链的亲水性/疏水性

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摘要

The ability to monitor precisely the hydrophobicity/hydrophilicity effects of amino acid substitutions in both the non-polar and polar faces of amphipathic alpha-helical peptides is critical in such areas as the rational de novo design of more effective antimicrobial peptides. The present study reports our initial results of employing the complementary separation modes of reversed-phase high-performance liquid chromatography (RP-HPLC) and hydrophilic interaction/cation-exchange chromatography (HILIC/CEX) to monitor the effect on apparent peptide hydrophilicity/hydrophobicity and amphipathicity of substituting single L- or D-amino acids into the centre of the non-polar or polar faces of a 26-residue biologically active amphipathic a-helical peptide, V-681. Our results clearly show that RP-HPLC and HILIC/CEX are best suited for resolving amphipathic peptides where substitutions are made in the non-polar and polar faces, respectively. Further, RP-HPLC and HILIC/CEX were demonstrated to be excellent monitors of hydrophilicity/hydrophobicity variations where amino acid substitutions were made in these respective faces. We believe these complementary high-performance modes offer excellent potential for rational design of novel amphipathic alpha-helical biologically active peptides. (C) 2004 Elsevier B.V. All rights reserved.
机译:精确监控两亲性α-螺旋肽的非极性和极性面上氨基酸取代的疏水性/亲水性的能力在诸如更有效的抗菌肽的合理从头设计等领域至关重要。本研究报告了我们采用反相高效液相色谱(RP-HPLC)和亲水相互作用/阳离子交换色谱(HILIC / CEX)的互补分离模式监测对表观肽亲水性/疏水性的影响的初步结果将单个L-或D-氨基酸替换为26个残基的具有生物活性的两亲性a-螺旋肽V-681的非极性或极性面的中心的两亲性。我们的结果清楚地表明,RP-HPLC和HILIC / CEX最适合解析在非极性和极性面上分别进行取代的两亲性肽。此外,RP-HPLC和HILIC / CEX被证明是亲水性/疏水性变化的优秀监测者,其中在这些相应面上进行了氨基酸取代。我们相信这些互补的高性能模式为合理设计新型两亲性α-螺旋生物活性肽提供了极好的潜力。 (C)2004 Elsevier B.V.保留所有权利。

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