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沙蚕毒素-1的环状结构和精氨酸残基对抗菌活性及其与磷脂和脂多糖模型膜相互作用的意义。

Significance of the cyclic structure and of arginine residues for the antibacterial activity of arenicin-1 and its interaction with phospholipid and lipopolysaccharide model membranes.

作者信息

Andrä Jörg, Hammer Malte U, Grötzinger Joachim, Jakovkin Igor, Lindner Buko, Vollmer Ekkehard, Fedders Henning, Leippe Matthias, Gutsmann Thomas

机构信息

Division of Biophysics, Research Center Borstel, Leibniz-Center for Medicine and Biosciences, Parkallee 10, D-23845 Borstel, Germany.

出版信息

Biol Chem. 2009 Apr;390(4):337-49. doi: 10.1515/BC.2009.039.

Abstract

Arenicin-1 (Ar-1) is a beta-sheeted antimicrobial peptide from the marine lugworm Arenicola marina. To elucidate the significance of its unique 18-residue cyclic structure and of six cationic arginines for its biological activity and its interaction with biomembranes, we synthesized one linear peptide in which the two cysteines were exchanged for serines (C/S-Ar-1) and a cyclic peptide in which all arginines were replaced by lysines (R/K-Ar-1). We addressed antibacterial and hemolytic activities, the impact of the peptides on bacterial morphology, and their binding to, intercalation into, and permeabilization of model membranes composed of phospholipids or lipopolysaccharide (LPS). In accordance with high salt concentration in sea water, the antibacterial activity of Ar-1 was almost insensitive to high NaCl concentrations. In contrast, the linear derivative lost activity under these conditions against polymyxin B-resistant Proteus mirabilis. Ar-1 intercalated into phospholipid and LPS membranes and formed heterogeneous and short-lived lesions. However, when the peptide was present in both membrane leaflets, it formed defined pores. This characteristic was not observed for the linear derivative C/S-Ar-1. Apparently, the disulfide bond provides conforma-tional stability, which has an impact on salt tolerance, prevents fast degradation by trypsin, and is a prerequisite for the formation of structurally defined pores.

摘要

沙蚕素-1(Ar-1)是一种来自海洋沙蚕(Arenicola marina)的β-折叠抗菌肽。为了阐明其独特的18个残基环状结构以及六个阳离子精氨酸对其生物活性及其与生物膜相互作用的重要性,我们合成了一种线性肽,其中两个半胱氨酸被丝氨酸取代(C/S-Ar-1),以及一种环状肽,其中所有精氨酸都被赖氨酸取代(R/K-Ar-1)。我们研究了抗菌和溶血活性、肽对细菌形态的影响,以及它们与由磷脂或脂多糖(LPS)组成的模型膜的结合、插入和通透作用。与海水中的高盐浓度一致,Ar-1的抗菌活性对高NaCl浓度几乎不敏感。相比之下,线性衍生物在这些条件下对多粘菌素B耐药的奇异变形杆菌失去活性。Ar-1插入磷脂和LPS膜并形成异质性且短暂的损伤。然而,当肽存在于两个膜小叶中时,它会形成明确的孔。线性衍生物C/S-Ar-1未观察到这一特性。显然,二硫键提供构象稳定性,这对耐盐性有影响,可防止被胰蛋白酶快速降解,并且是形成结构明确的孔的先决条件。

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