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叶瓣不对称性对含磷脂酸的双层脂拉伸弹性的影响。

Effect of leaflet asymmetry on the stretching elasticity of lipid bilayers with phosphatidic acid.

机构信息

Department of Cytobiochemistry, Faculty of Biotechnology, University of Wroclaw, Wroclaw, Poland; Max Planck Institute of Colloids and Interfaces, Potsdam, Germany; Department of Biomedical Engineering, Wroclaw University of Science and Technology, Wroclaw, Poland.

Department of Cytobiochemistry, Faculty of Biotechnology, University of Wroclaw, Wroclaw, Poland.

出版信息

Biophys J. 2024 Aug 20;123(16):2406-2421. doi: 10.1016/j.bpj.2024.05.031. Epub 2024 May 31.

Abstract

The asymmetry of membranes has a significant impact on their biophysical characteristics and behavior. This study investigates the composition and mechanical properties of symmetric and asymmetric membranes in giant unilamellar vesicles (GUVs) made of palmitoyloleoyl phosphatidylcholine (POPC) and palmitoyloleoyl phosphatidic acid (POPA). A combination of fluorescence quantification, zeta potential measurements, micropipette aspiration, and bilayer molecular dynamics simulations are used to characterize these membranes. The outer leaflet composition in vesicles is found consistent across the two preparation methods we employed, namely electroformation and inverted emulsion transfer. However, characterizing the inner leaflet poses challenges. Micropipette aspiration of GUVs show that oil residues do not substantially alter membrane elasticity, but simulations reveal increased membrane thickness and decreased interleaflet coupling in the presence of oil. Asymmetric membranes with a POPC:POPA mixture in the outer leaflet and POPC in the inner leaflet display similar stretching elasticity values to symmetric POPC:POPA membranes, suggesting potential POPA insertion into the inner leaflet during vesicle formation and suppressed asymmetry. The inverse compositional asymmetry, with POPC in the outer leaflet and POPC:POPA in the inner one yield less stretchable membranes with higher compressibility modulus compared with their symmetric counterparts. Challenges in achieving and predicting compositional correspondence highlight the limitations of phase-transfer-based methods. In addition, caution is advised when using fluorescently labeled lipids (even at low fractions of 0.5 mol %), as unexpected gel-like domains in symmetric POPC:POPA membranes were observed only with a specific type of labeled DOPE (dioleoylphosphatidylethanolamine) and the same fraction of unlabeled DOPE. The latter suggest that such domain formation may result from interactions between lipids and membrane fluorescent probes. Overall, this study underscores the complexity of factors influencing GUV membrane asymmetry, emphasizing the need for further research and improvement of characterization techniques.

摘要

膜的不对称性对其生物物理特性和行为有重大影响。本研究调查了由棕榈酰油酰磷脂酰胆碱(POPC)和棕榈酰油酰磷脂酸(POPA)制成的巨大单层囊泡(GUV)中的对称和不对称膜的组成和力学性质。使用荧光定量、zeta 电位测量、微管吸吮和双层分子动力学模拟的组合来表征这些膜。我们采用了两种制备方法,即电形成法和反转乳液转移法,发现囊泡中外层的组成一致。然而,表征内层存在挑战。GUV 的微管吸吮表明油残留物不会显著改变膜弹性,但模拟表明在存在油的情况下,膜厚度增加,层间耦合减少。具有外层为 POPC:POPA 混合物和内层为 POPC 的不对称膜显示出与对称 POPC:POPA 膜相似的拉伸弹性值,这表明在囊泡形成过程中可能存在 POPA 插入内层,并抑制了不对称性。外层为 POPC,内层为 POPC:POPA 的反组成不对称膜具有比其对称对应物更具弹性的膜,压缩弹性模量更高。实现和预测组成对应性的挑战突显了基于相转移的方法的局限性。此外,当使用荧光标记的脂质(即使在 0.5 mol%的低分数下)时应谨慎,因为仅在用特定类型的标记 DOPE(二油酰基磷脂酰乙醇胺)和相同分数的未标记 DOPE 时,才观察到对称 POPC:POPA 膜中意外的凝胶状域。后者表明,这种域的形成可能是由于脂质与膜荧光探针之间的相互作用所致。总的来说,本研究强调了影响 GUV 膜不对称性的因素的复杂性,强调了进一步研究和改进表征技术的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35a6/11365108/50e79724046b/gr1.jpg

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