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含Aib的模型肽作为离子跨膜转移模板的结构-功能关系

Structure-function relationship of model Aib-containing peptides as ion transfer intermembrane templates.

作者信息

Higashimoto Y, Kodama H, Jelokhani-Niaraki M, Kato F, Kondo M

机构信息

Department of Chemistry, Faculty of Science and Engineering, Saga University, Saga, 840-8502, Japan.

出版信息

J Biochem. 1999 Apr;125(4):705-12. doi: 10.1093/oxfordjournals.jbchem.a022340.

Abstract

Peptaibols comprise a family of peptide antibiotics with high contents of 2-aminoisobutyric acid (Aib) residues and C-terminal amino alcohols. These peptides form alpha-helical structures leading to voltage-gated ion channels in lipid membranes. In the present study, amphiphilic helical Aib-containing peptides of various chain-lengths, Ac-(Aib-Lys-Aib-Ala)n-NH2 (n = 1-5), were designed to investigate the mechanisms of the aggregation and transmembrane orientation of helical motifs in lipid bilayer membranes. Peptide synthesis was performed by the conventional stepwise Fmoc solid-phase method. The crude peptides were obtained in high yields (66-85%) with high purities (69-95%). Conformational analysis of the synthetic peptides was performed by CD spectroscopy. It was found that these peptides take on highly helical structures, and the helicity of the peptides increases with an increase in chain-length. The longest peptide, Ac-(Aib-Lys-Aib-Ala)5-NH2, self-aggregates and adopts a barrel-stave conformation in liposomes. Ac-(Aib-Lys-Aib-Ala)5-NH2 exhibited potent antimicrobial activity against Gram-positive bacteria. Patch-clamp measurements revealed that this peptide can form well-defined ion channels with a long lifetime at relatively low transbilayer potentials and peptide concentrations. For this peptide, the single-channel conductance of the most frequent event is 227 pS, which could be related to a single-state tetrameric pore.

摘要

肽菌素是一类肽抗生素家族,含有高含量的2-氨基异丁酸(Aib)残基和C端氨基醇。这些肽形成α-螺旋结构,导致脂质膜中的电压门控离子通道。在本研究中,设计了各种链长的两亲性含螺旋Aib的肽,即Ac-(Aib-Lys-Aib-Ala)n-NH2(n = 1-5),以研究脂质双层膜中螺旋基序的聚集和跨膜取向机制。肽的合成采用传统的逐步Fmoc固相法进行。粗肽以高产率(66-85%)和高纯度(69-95%)获得。通过圆二色光谱对合成肽进行构象分析。发现这些肽具有高度螺旋结构,并且肽的螺旋度随着链长的增加而增加。最长的肽Ac-(Aib-Lys-Aib-Ala)5-NH2在脂质体中自聚集并采用桶板构象。Ac-(Aib-Lys-Aib-Ala)5-NH2对革兰氏阳性菌表现出强大的抗菌活性。膜片钳测量表明,该肽在相对较低的跨膜电位和肽浓度下能够形成具有长寿命的明确离子通道。对于该肽,最常见事件的单通道电导为227 pS,这可能与单态四聚体孔有关。

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