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全氘代植烷酸及其磷脂衍生物的立体选择性合成,以及它们形成用于中子反射率研究的脂质模型膜。

Stereoselective synthesis of perdeuterated phytanic acid, its phospholipid derivatives and their formation into lipid model membranes for neutron reflectivity studies.

作者信息

Yepuri Nageshwar R, Holt Stephen A, Moraes Greta, Holden Peter J, Hossain Khondker R, Valenzuela Stella M, James Michael, Darwish Tamim A

机构信息

National Deuteration Facility, Bragg Institute, Australian Nuclear Science and Technology Organisation, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia.

Bragg Institute, Australian Nuclear Science and Technology Organisation, Locked Bag 2001, Kirrawee DC, NSW 2232, Australia.

出版信息

Chem Phys Lipids. 2014 Oct;183:22-33. doi: 10.1016/j.chemphyslip.2014.04.004. Epub 2014 May 2.

Abstract

We describe a straightforward method, for synthesis of large scale (gram quantities) of highly deuterated phytanic acid from commercially available phytol while preserving the stereochemistry around the chiral centres. The subsequent synthesis of tail-deuterated analogues of the archeabacterial membrane lipids 1,2-di(3RS,7R,11R-phytanyl)-sn-glycero-3-phosphocholine (DPEPC) and 1,2-di(3RS,7R,11R-phytanoyl)-sn-glycero-3-phosphocholine (DPhyPC) from perdeuterated phytanic acid is also described. Both lipids were employed in construction of two different model membranes, namely Langmuir monolayers and a tethered bilayer membrane (TBM) on a solid substrate, characterised by pressure area isotherm and neutron reflectometry techniques. At 10 mN/m pressure the head-group thickness of both monolayers was similar while the thickness of the tail region was significantly larger for tail-deuterated DPhyPC, which was evident from a smaller area per molecule. At 20 mN/m the thickness of the head and tail regions in both lipids was comparable, yet the area per molecule of tail-deuterated DPhyPC was 10% smaller than tail-deuterated DPEPC. In the TBM bilayer model membrane, the thickness of the lipid tails in both inner and outer leaflets was 8.2 Å, giving a total of 16.4 Å. Deuteration enabled unambiguous determination of the relative proportion of the hydrogenous tether, phospholipid and subphase.

摘要

我们描述了一种直接的方法,可从市售的叶绿醇大规模(克级)合成高度氘代的植烷酸,同时保留手性中心周围的立体化学。还描述了随后从全氘代植烷酸合成古细菌膜脂1,2-二(3RS,7R,11R-植烷基)-sn-甘油-3-磷酸胆碱(DPEPC)和1,2-二(3RS,7R,11R-植酰基)-sn-甘油-3-磷酸胆碱(DPhyPC)的尾端氘代类似物。这两种脂质都用于构建两种不同的模型膜,即朗缪尔单层膜和固体基质上的拴系双层膜(TBM),通过压力-面积等温线和中子反射技术进行表征。在10 mN/m的压力下,两种单层膜的头部基团厚度相似,而尾端氘代的DPhyPC的尾部区域厚度明显更大,这从每个分子较小的面积可以明显看出。在20 mN/m时,两种脂质的头部和尾部区域厚度相当,但尾端氘代的DPhyPC的每个分子面积比尾端氘代的DPEPC小10%。在TBM双层模型膜中,内叶和外叶中脂质尾部的厚度均为8.2 Å,总厚度为16.4 Å。氘代使得能够明确确定含氢拴系、磷脂和亚相的相对比例。

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