双层
脂质双层
化学
脂质双层相行为
模型脂质双层
肽
两亲性
层状相
结晶学
胶束
生物物理学
磷酸胆碱
磷脂
立体化学
层状结构
膜
生物化学
有机化学
磷脂酰胆碱
水溶液
生物
共聚物
聚合物
作者
Katherine A. Henzler‐Wildman,Dong-Kuk Lee,Ayyalusamy Ramamoorthy
出处
期刊:Biochemistry
[American Chemical Society]
日期:2003-05-08
卷期号:42 (21): 6545-6558
被引量:481
摘要
LL-37 is an amphipathic, α-helical, antimicrobial peptide. 15N chemical shift and 15N dipolar−shift spectroscopy of site-specifically labeled LL-37 in oriented lipid bilayers indicate that the amphipathic helix is oriented parallel to the surface of the bilayer. This surface orientation is maintained in both anionic and zwitterionic bilayers and at different temperatures and peptide concentrations, ruling out a barrel-stave mechanism for bilayer disruption by LL-37. In contrast, electrostatic factors, the type of lipid, and the presence of cholesterol do affect the extent to which LL-37 perturbs the lipids in the bilayer as observed with 31P NMR. The 31P spectra also show that micelles or other small, rapidly tumbling membrane fragments are not formed in the presence of LL-37, excluding a detergent-like mechanism. LL-37 does increase the lamellar to inverted hexagonal phase transition temperature of both PE model lipid systems and Escherichia coli lipids, demonstrating that it induces positive curvature strain in these environments. These results support a toroidal pore mechanism of lipid bilayer disruption by LL-37.
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