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一种用于探究膜重塑和破坏的多功能悬浮脂质膜系统。

A Versatile Suspended Lipid Membrane System for Probing Membrane Remodeling and Disruption.

作者信息

Sannigrahi Achinta, Rai Vishwesh Haricharan, Chalil Muhsin Vannan, Chakraborty Debayani, Meher Subrat Kumar, Roy Rahul

机构信息

Department of Chemical Engineering, Indian Institute of Science, Bangalore 560012, Karnataka, India.

出版信息

Membranes (Basel). 2022 Nov 25;12(12):1190. doi: 10.3390/membranes12121190.

Abstract

Artificial membrane systems can serve as models to investigate molecular mechanisms of different cellular processes, including transport, pore formation, and viral fusion. However, the current, such as SUVs, GUVs, and the supported lipid bilayers suffer from issues, namely high curvature, heterogeneity, and surface artefacts, respectively. Freestanding membranes provide a facile solution to these issues, but current systems developed by various groups use silicon or aluminum oxide wafers for fabrication that involves access to a dedicated nanolithography facility and high cost while conferring poor membrane stability. Here, we report the development, characterization and applications of an easy-to-fabricate suspended lipid bilayer (SULB) membrane platform leveraging commercial track-etched porous filters (PCTE) with defined microwell size. Our SULB system offers a platform to study the lipid composition-dependent structural and functional properties of membranes with exceptional stability. With dye entrapped in PCTE microwells by SULB, we show that sphingomyelin significantly augments the activity of pore-forming toxin, Cytolysin A (ClyA) and the pore formation induces lipid exchange between the bilayer leaflets. Further, we demonstrate high efficiency and rapid kinetics of membrane fusion by dengue virus in our SULB platform. Our suspended bilayer membrane mimetic offers a novel platform to investigate a large class of biomembrane interactions and processes.

摘要

人工膜系统可作为模型,用于研究不同细胞过程的分子机制,包括运输、孔形成和病毒融合。然而,目前的系统,如小单层囊泡(SUVs)、大单层囊泡(GUVs)和支撑脂质双层,分别存在高曲率、异质性和表面假象等问题。独立膜为这些问题提供了一个简便的解决方案,但目前各研究小组开发的系统在制造过程中使用硅或氧化铝晶片,这需要使用专门的纳米光刻设备,成本高昂,且膜稳定性较差。在此,我们报告了一种易于制造的悬浮脂质双层(SULB)膜平台的开发、表征及应用,该平台利用具有确定微孔尺寸的商用径迹蚀刻多孔过滤器(PCTE)。我们的SULB系统提供了一个平台,用于研究具有卓越稳定性的膜的脂质组成依赖性结构和功能特性。通过SULB将染料包裹在PCTE微孔中,我们发现鞘磷脂显著增强了成孔毒素细胞溶素A(ClyA)的活性,且孔形成诱导了双层小叶之间的脂质交换。此外,我们在SULB平台上证明了登革热病毒膜融合的高效率和快速动力学。我们的悬浮双层膜模拟物为研究一大类生物膜相互作用和过程提供了一个新的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcb0/9784602/32b1e91f4373/membranes-12-01190-g001.jpg

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