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Solid-State NMR Investigation of the Membrane-Disrupting Mechanism of Antimicrobial Peptides MSI-78 and MSI-594 Derived from Magainin 2 and Melittin

机译:固态NMR研究衍生自Magainin 2和Melittin的抗菌肽MSI-78和MSI-594的膜破坏机理

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摘要

The mechanism of membrane interaction of two amphipathic antimicrobial peptides, MSI-78 and MSI-594, derived from magainin-2 and melittin, is presented. Both the peptides show excellent antimicrobial activity. The 8-anilinonaphthalene-1-sulfonic acid uptake experiment using Escherichia coli cells suggests that the outer membrane permeabilization is mainly due to electrostatic interactions. The interaction of MSI-78 and MSI-594 with lipid membranes was studied using 31P and 2H solid-state NMR, circular dichroism, and differential scanning calorimetry techniques. The binding of MSI-78 and MSI-594 to the lipid membrane is associated with a random coil to α-helix structural transition. MSI-78 and MSI-594 also induce the release of entrapped dye from POPC/POPG (3:1) vesicles. Measurement of the phase-transition temperature of peptide-DiPoPE dispersions shows that both MSI-78 and MSI-594 repress the lamellar-to-inverted hexagonal phase transition by inducing positive curvature strain. 15N NMR data suggest that both the peptides are oriented nearly perpendicular to the bilayer normal, which infers that the peptides most likely do not function via a barrel-stave mechanism of membrane-disruption. Data obtained from 31P NMR measurements using peptide-incorporated POPC and POPG oriented lamellar bilayers show a disorder in the orientation of lipids up to a peptide/lipid ratio of 1:20, and the formation of nonbilayer structures at peptide/lipid ratio >1:8. 2H-NMR experiments with selectively deuterated lipids reveal peptide-induced disorder in the methylene units of the lipid acyl chains. These results are discussed in light of lipid-peptide interactions leading to the disruption of membrane via either a carpet or a toroidal-type mechanism.
机译:提出了由magainin-2和蜂毒肽衍生的两种两亲抗菌肽MSI-78和MSI-594的膜相互作用的机制。两种肽均显示出优异的抗微生物活性。使用大肠杆菌细胞的8-苯胺基萘-1-磺酸吸收实验表明,外膜通透性主要是由于静电相互作用。使用31P和2H固态NMR,圆二色性和差示扫描量热技术研究了MSI-78和MSI-594与脂质膜的相互作用。 MSI-78和MSI-594与脂质膜的结合与从无规卷曲到α-螺旋结构的转变有关。 MSI-78和MSI-594也可以诱导POPC / POPG(3:1)囊泡中捕获的染料释放。肽-DiPoPE分散体的相变温度测量结果表明,MSI-78和MSI-594都通过诱导正曲率应变来抑制层状转变为六角形的转变。 15N NMR数据表明,这两种肽的取向都几乎垂直于双层法线,这表明该肽极有可能不通过膜破坏的桶状壁机理起作用。使用结合了肽的POPC和POPG定向的层状双层从31P NMR测量获得的数据显示,直至肽/脂质比为1:20的脂质取向紊乱,以及肽/脂质比> 1的非双层结构形成: 8。选择性氘化脂质的2 H-NMR实验揭示了肽诱导的脂质酰基链亚甲基单元中的紊乱。鉴于脂质-肽相互作用通过地毯或环型机制导致膜破裂,讨论了这些结果。

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