Koyanagi Takaoki, Cao Kevin J, Leriche Geoffray, Onofrei David, Holland Gregory P, Mayer Michael, Sept David, Yang Jerry
Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, California, 92093-0358, USA.
Department of Chemistry and Biochemistry, San Diego State University, San Diego, California, 92182-1030, USA.
Chemistry. 2017 May 17;23(28):6757-6762. doi: 10.1002/chem.201701378. Epub 2017 Apr 20.
This paper presents a new hybrid lipid that fuses the ideas of molecular tethering of lipid tails used by archaea and the integration of cholesterol groups used by eukaryotes, thereby leveraging two strategies employed by nature to increase lipid packing in membranes. Liposomes comprised of pure hybrid lipids exhibited a 5-30-fold decrease in membrane leakage of small ions and molecules compared to liposomes that used only one strategy (lipid tethering or cholesterol incorporation) to increase membrane integrity. Molecular dynamics simulations reveal that tethering of lipid tails and integration of cholesterol both reduce the disorder in lipid tails and time-dependent variance in area per lipid within a membrane, leading to tighter lipid packing. These hybrid lipid membranes have exceptional stability in serum, yet can support functional ion channels, can serve as a substrate for phospholipase enzymes, and can be used for liposomal delivery of molecules into living cells.
本文介绍了一种新型杂合脂质,它融合了古细菌使用的脂质尾部分子栓系理念和真核生物使用的胆固醇基团整合理念,从而利用了自然界采用的两种策略来增加膜中的脂质堆积。与仅使用一种策略(脂质栓系或胆固醇掺入)来提高膜完整性的脂质体相比,由纯杂合脂质组成的脂质体在小离子和分子的膜泄漏方面降低了5至30倍。分子动力学模拟表明,脂质尾部的栓系和胆固醇的整合均会降低脂质尾部的无序性以及膜内每个脂质的面积随时间的变化,从而导致脂质堆积更紧密。这些杂合脂质膜在血清中具有出色的稳定性,但能够支持功能性离子通道,可作为磷脂酶的底物,并且可用于将分子脂质体递送至活细胞中。