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非极性脂质作为古菌脂双层模拟物中膜性质的调节剂。

Non-Polar Lipids as Regulators of Membrane Properties in Archaeal Lipid Bilayer Mimics.

机构信息

University Lyon, INSA Lyon, CNRS, UMR 5240, CEDEX, F-69621 Villeurbanne, France.

Department of Chemistry, Imperial College London, London SW7 2AZ, UK.

出版信息

Int J Mol Sci. 2021 Jun 4;22(11):6087. doi: 10.3390/ijms22116087.

Abstract

The modification of archaeal lipid bilayer properties by the insertion of apolar molecules in the lipid bilayer midplane has been proposed to support cell membrane adaptation to extreme environmental conditions of temperature and hydrostatic pressure. In this work, we characterize the insertion effects of the apolar polyisoprenoid squalane on the permeability and fluidity of archaeal model membrane bilayers, composed of lipid analogues. We have monitored large molecule and proton permeability and Laurdan generalized polarization from lipid vesicles as a function of temperature and hydrostatic pressure. Even at low concentration, squalane (1 mol%) is able to enhance solute permeation by increasing membrane fluidity, but at the same time, to decrease proton permeability of the lipid bilayer. The squalane physicochemical impact on membrane properties are congruent with a possible role of apolar intercalants on the adaptation of Archaea to extreme conditions. In addition, such intercalant might be used to cheaply create or modify chemically resistant liposomes (archeaosomes) for drug delivery.

摘要

通过在脂质双层中间层插入非极性分子来改变古菌脂质双层的性质,被认为可以支持细胞膜适应温度和静压等极端环境条件。在这项工作中,我们研究了非极性多异戊二烯 squalane 对由脂质类似物组成的古菌模型膜双层的通透性和流动性的插入效应。我们监测了大分子量分子和质子通过脂质囊泡的通透性以及 Laurdan 普遍极化作为温度和静压的函数。即使在低浓度下,squalane(1 mol%)也能够通过增加膜流动性来增强溶质渗透,但同时降低脂质双层的质子通透性。squalane 对膜性质的物理化学影响与非极性插入剂在古菌适应极端条件中的可能作用一致。此外,这种插入剂可用于廉价地创建或修饰用于药物输送的耐化学性脂质体(archeaosomes)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8780/8200183/72c62099de99/ijms-22-06087-g001.jpg

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