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生物物理研究模型素-5-NH 的抗菌作用。

Biophysical investigation into the antibacterial action of modelin-5-NH.

机构信息

School of Pharmacy and Biological Sciences, University of Central Lancashire, Preston PR1 2HE, UK.

出版信息

Soft Matter. 2019 May 22;15(20):4215-4226. doi: 10.1039/c8sm02374c.

DOI:10.1039/c8sm02374c
PMID:31074477
Abstract

Modelin-5-CONH2 (M5-NH2) is a synthetic antimicrobial peptide, which was found to show potent activity against Bacillus subtilis (minimum lethal concentration = 8.47 μM) and to bind strongly to membranes of the organism (Kd = 10.44 μM). The peptide adopted high levels of amphiphilic α-helical structure in the presence of these membranes (>50%), which led to high levels of insertion (Δπ ≥ 8.0 mN m-1). M5-NH2 showed high affinity for anionic lipid (Kd = 7.46 μM) and zwitterionic lipid (Kd = 14.7 μM), which drove insertion into membranes formed from these lipids (Δπ = 11.5 and 3.5 mN m-1, respectively). Neutron diffraction studies showed that M5-NH2 inserted into B. subtilis membranes with its N-terminal residue, L16, located 5.5 Å from the membrane centre, in the acyl chain region of these membranes, and promoted a reduction in membrane thickness of circa 1.8 Å or 5% of membrane width. Insertion into B. subtilis membranes by the peptide also promoted other effects associated with membrane thinning, including increases in membrane surface area (Cs-1 decreases) and fluidity (ΔGmix > 0 to ΔGmix < 0). Membrane insertion and thinning by M5-NH2 induced high levels of lysis (>55%), and it is speculated that the antibacterial action of the peptide may involve the toroidal pore, carpet or tilted-type mechanism of membrane permeabilization.

摘要

Modelin-5-CONH2 (M5-NH2) 是一种合成抗菌肽,对枯草芽孢杆菌表现出很强的活性(最小致死浓度 = 8.47 μM),并与该生物的膜强烈结合(Kd = 10.44 μM)。在这些膜的存在下,该肽采用了高水平的两亲性α-螺旋结构(>50%),导致高水平的插入(Δπ ≥ 8.0 mN m-1)。M5-NH2 对阴离子脂质(Kd = 7.46 μM)和两性离子脂质(Kd = 14.7 μM)具有高亲和力,这促使其插入由这些脂质形成的膜中(Δπ 分别为 11.5 和 3.5 mN m-1)。中子衍射研究表明,M5-NH2 以其 N 端残基 L16 插入枯草芽孢杆菌膜中,L16 位于膜中心 5.5 Å 处,位于这些膜的酰链区,并促使膜厚度减少约 1.8 Å 或膜宽度的 5%。该肽插入枯草芽孢杆菌膜还促进了与膜变薄相关的其他效应,包括膜表面积增加(Cs-1 降低)和流动性增加(ΔGmix > 0 至 ΔGmix < 0)。M5-NH2 的膜插入和变薄诱导了高水平的裂解(>55%),推测该肽的抗菌作用可能涉及环孔、地毯或倾斜型的膜渗透机制。

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