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二硫键在鲎素与脂质相互作用中的作用。

Role of disulfide linkages in tachyplesin-lipid interactions.

作者信息

Matsuzaki K, Nakayama M, Fukui M, Otaka A, Funakoshi S, Fujii N, Bessho K, Miyajima K

机构信息

Faculty of Pharmaceutical Sciences, Kyoto University, Japan.

出版信息

Biochemistry. 1993 Nov 2;32(43):11704-10. doi: 10.1021/bi00094a029.

Abstract

In order to elucidate the role of the two disulfide linkages of tachyplesin I (T-SS), a membrane-acting cyclic antimicrobial peptide from Tachypleus tridentatus, we synthesized the acyclic analog (T-Acm) with the four SH groups protected by acetamidomethyl groups and also investigated the interactions of these peptides with lipid bilayers. T-SS induced leakage of calcein from egg yolk L-alpha-phosphatidylglycerol large unilamellar vesicles (PG LUVs) at peptide concentrations 1 order of magnitude smaller than those at which leakage was induced by T-Acm, which coincides with the stronger antimicrobial activities of T-SS. The micellization of PG LUVs was also more efficient for the cyclic peptide. Fluorescence titration studies revealed that binding affinities of both peptides to the PG membranes were similar. Fourier transform infrared polarized attenuated total reflection spectroscopy and fluorescence quenching experiments demonstrated that T-SS and T-Acm both form amphiphilic antiparallel beta-sheet structures in the membranes. They are formed in such a way that the sheet planes lie parallel to the membrane surface with the sheet hydrophobic surfaces penetrating slightly into the hydrophobic region of the bilayers. Furthermore, the observation that the linear T-Acm, the weaker membrane permeabilizer, caused a far more serious membrane disruption suggests the possibility that the mechanisms of membrane permeabilization by the cyclic peptide are different from those by the linear peptide, the latter being the disruption of the lipid organization.

摘要

为了阐明来自中国鲎的膜活性环状抗菌肽鲎素I(T-SS)的两个二硫键的作用,我们合成了四个SH基团被乙酰氨基甲基保护的无环类似物(T-Acm),并研究了这些肽与脂质双层的相互作用。在肽浓度比T-Acm诱导泄漏时低1个数量级的情况下,T-SS就能诱导卵黄L-α-磷脂酰甘油大单层囊泡(PG LUVs)中的钙黄绿素泄漏,这与T-SS更强的抗菌活性相一致。PG LUVs的胶束化对环肽也更有效。荧光滴定研究表明,两种肽与PG膜的结合亲和力相似。傅里叶变换红外偏振衰减全反射光谱和荧光猝灭实验表明,T-SS和T-Acm在膜中均形成两亲性反平行β-折叠结构。它们的形成方式是,折叠平面与膜表面平行,折叠疏水表面略微穿透双层的疏水区域。此外,较弱的膜通透剂线性T-Acm导致更严重的膜破坏这一观察结果表明,环肽使膜通透的机制可能与线性肽不同,后者是破坏脂质结构。

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