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环己烷环降低了受古菌启发的四醚脂质中小离子的膜通透性。

Cyclohexane Rings Reduce Membrane Permeability to Small Ions in Archaea-Inspired Tetraether Lipids.

机构信息

Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, CA, 92093-0358, USA.

Department of Chemistry and Biochemistry, San Diego State University, San Diego, CA, 92182-1030, USA.

出版信息

Angew Chem Int Ed Engl. 2016 Jan 26;55(5):1890-3. doi: 10.1002/anie.201510445. Epub 2015 Dec 23.

Abstract

Extremophile archaeal organisms overcome problems of membrane permeability by producing lipids with structural elements that putatively improve membrane integrity compared to lipids from other life forms. Herein, we describe a series of lipids that mimic some key structural features of archaeal lipids, such as: 1) single tethering of lipid tails to create fully transmembrane tetraether lipids and 2) the incorporation of small rings into these tethered segments. We found that membranes formed from pure tetraether lipids leaked small ions at a rate that was about two orders of magnitude slower than common bilayer-forming lipids. Incorporation of cyclopentane rings into the tetraether lipids did not affect membrane leakage, whereas a cyclohexane ring reduced leakage by an additional 40 %. These results show that mimicking certain structural features of natural archaeal lipids results in improved membrane integrity, which may help overcome limitations of many current lipid-based technologies.

摘要

极端古菌生物通过产生具有结构元素的脂质来克服膜通透性问题,这些结构元素据称可改善膜的完整性,与来自其他生命形式的脂质相比。在此,我们描述了一系列模拟古菌脂质某些关键结构特征的脂质,例如:1)单锚定脂质尾巴以形成完全跨膜四醚脂质,以及 2)将小环掺入这些锚定片段中。我们发现,由纯四醚脂质形成的膜泄漏小离子的速度比常见的双层形成脂质慢约两个数量级。将环戊烷环掺入四醚脂质中不会影响膜泄漏,而环己烷环则使泄漏减少了 40%。这些结果表明,模拟天然古菌脂质的某些结构特征可导致膜完整性得到改善,这可能有助于克服许多当前基于脂质的技术的局限性。

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