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由α-螺旋肽诱导囊泡融合形成的具有高胆固醇含量的仿生支撑脂质双层。

Biomimetic supported lipid bilayers with high cholesterol content formed by α-helical peptide-induced vesicle fusion.

作者信息

Hardy Gregory J, Nayak Rahul, Alam S Munir, Shapter Joseph G, Heinrich Frank, Zauscher Stefan

机构信息

Mechanical Engineering and Materials Science, Duke University, Durham, NC, USA 27708.

出版信息

J Mater Chem. 2012 Aug 28;22(37):19506-19513. doi: 10.1039/C2JM32016A.

Abstract

In this study, we present a technique to create a complex, high cholesterol-containing supported lipid bilayers (SLBs) using α-helical (AH) peptide-induced vesicle fusion. Vesicles consisting of POPC : POPE : POPS : SM : Chol (9.35 : 19.25 : 8.25 : 18.15 : 45.00) were used to form a SLB that models the native composition of the human immunodeficiency virus-1 (HIV-1) lipid envelope. In the absence of AH peptides, these biomimetic vesicles fail to form a complete SLB. We verified and characterized AH peptide-induced vesicle fusion by quartz crystal microbalance with dissipation monitoring, neutron reflectivity, and atomic force microscopy. Successful SLB formation entailed a characteristic frequency shift of -35.4 ± 2.0 Hz and a change in dissipation energy of 1.91 ± 0.52 × 10. Neutron reflectivity measurements determined the SLB thickness to be 49.9 Å, and showed the SLB to be 100 % complete and void of residual AH peptide after washing. Atomic force microscopy imaging confirmed complete SLB formation and revealed three distinct domains with no visible defects. This vesicle fusion technique gives researchers access to a complex SLB composition with high cholesterol content and thus the ability to better recapitulate the native HIV-1 lipid membrane.

摘要

在本研究中,我们展示了一种利用α-螺旋(AH)肽诱导囊泡融合来创建复杂的、含高胆固醇的支持脂质双层(SLB)的技术。由POPC : POPE : POPS : SM : Chol(9.35 : 19.25 : 8.25 : 18.15 : 45.00)组成的囊泡被用于形成一种模拟人类免疫缺陷病毒1型(HIV-1)脂质包膜天然组成的SLB。在没有AH肽的情况下,这些仿生囊泡无法形成完整的SLB。我们通过带有耗散监测的石英晶体微天平、中子反射率和原子力显微镜对AH肽诱导的囊泡融合进行了验证和表征。成功形成SLB需要-35.4 ± 2.0 Hz的特征频率偏移和1.91 ± 0.52 × 10的耗散能量变化。中子反射率测量确定SLB厚度为49.9 Å,并表明SLB在洗涤后是100%完整的且没有残留的AH肽。原子力显微镜成像证实了SLB的完全形成,并揭示了三个不同的区域,没有可见缺陷。这种囊泡融合技术使研究人员能够获得具有高胆固醇含量的复杂SLB组成,从而能够更好地重现天然HIV-1脂质膜。

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