Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.

In a companion study of the effects of acyl chain unsaturation on a series of model sn-1,2-diacylglycerols (DGs) we showed that individual DGs could adopt one of three energy-minimized conformations depending on the number and location of cis double bonds in the sn-2 chain. Here we show that each of...

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Main Authors: KR Applegate, JA Glomset
Format: Article
Language:English
Published: Elsevier 1991-10-01
Series:Journal of Lipid Research
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520416505
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spelling doaj-a0d72b8a621d4923af6a81c6bfea142c2021-04-26T05:53:07ZengElsevierJournal of Lipid Research0022-22751991-10-01321016451655Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.KR Applegate0JA Glomset1Department of Biochemistry, University of Washington, Seattle 98195.Department of Biochemistry, University of Washington, Seattle 98195.In a companion study of the effects of acyl chain unsaturation on a series of model sn-1,2-diacylglycerols (DGs) we showed that individual DGs could adopt one of three energy-minimized conformations depending on the number and location of cis double bonds in the sn-2 chain. Here we show that each of these conformations promotes a distinct type of packing arrangement in a simulated DG monolayer. One conformation, shown by sn-1-18:0 DGs containing an sn-2 22:6(n-3)-, 20:4(n-6)-, or 20:3(n-9)- group, determines a regular packing that resembles a known hybrid subcell, HS2, of crystalline hydrocarbon chains. The second conformation, shown by DGs containing an sn-2 18:0-, 18:2(n-6)-, or 18:3(n-3)- group, determines a regular packing that resembles a second known, distinct hydrocarbon subcell, HS1. The third conformation, that of 18:0/18:1(n-9) DG, determines a much looser, less energetically favorable packing. Stable heterogeneous packings are possible for DGs that have similar conformations, but mixed packings of DGs that have dissimilar conformations are less stable. These results raise the possibility that differences in sn-2 acyl chain unsaturation among membrane sn-1,2-diacylglycerophospholipids may promote the formation of different domains.http://www.sciencedirect.com/science/article/pii/S0022227520416505
collection DOAJ
language English
format Article
sources DOAJ
author KR Applegate
JA Glomset
spellingShingle KR Applegate
JA Glomset
Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
Journal of Lipid Research
author_facet KR Applegate
JA Glomset
author_sort KR Applegate
title Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
title_short Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
title_full Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
title_fullStr Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
title_full_unstemmed Effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
title_sort effect of acyl chain unsaturation on the packing of model diacylglycerols in simulated monolayers.
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 1991-10-01
description In a companion study of the effects of acyl chain unsaturation on a series of model sn-1,2-diacylglycerols (DGs) we showed that individual DGs could adopt one of three energy-minimized conformations depending on the number and location of cis double bonds in the sn-2 chain. Here we show that each of these conformations promotes a distinct type of packing arrangement in a simulated DG monolayer. One conformation, shown by sn-1-18:0 DGs containing an sn-2 22:6(n-3)-, 20:4(n-6)-, or 20:3(n-9)- group, determines a regular packing that resembles a known hybrid subcell, HS2, of crystalline hydrocarbon chains. The second conformation, shown by DGs containing an sn-2 18:0-, 18:2(n-6)-, or 18:3(n-3)- group, determines a regular packing that resembles a second known, distinct hydrocarbon subcell, HS1. The third conformation, that of 18:0/18:1(n-9) DG, determines a much looser, less energetically favorable packing. Stable heterogeneous packings are possible for DGs that have similar conformations, but mixed packings of DGs that have dissimilar conformations are less stable. These results raise the possibility that differences in sn-2 acyl chain unsaturation among membrane sn-1,2-diacylglycerophospholipids may promote the formation of different domains.
url http://www.sciencedirect.com/science/article/pii/S0022227520416505
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