Specific volumes of unsaturated phosphatidylcholines in the liquid crystalline lamellar phase.

Biochim Biophys Acta

Structural Biology Institute, IBI-2, Research Center Jülich, Düsseldorf, Germany.

Published: August 2005

AI Article Synopsis

  • The study measured the specific volumes of seven types of phosphatidylcholines with varying acyl chain configurations using the neutral buoyancy method in the liquid crystalline lamellar phase.
  • It was found that the molecular volume can be approximated by combining a constant volume for the lipid head and temperature-dependent volumes for the hydrocarbon chains.
  • A linear relationship was established between chain segment volumes and temperature, leading to a reliable set of volumes that can predict phosphatidylcholine molecular volumes with minimal error.

Article Abstract

The specific volumes of seven 1,2-diacyl-sn-glycero-3-phosphocholines with symmetric, unbranched acyl chains containing one, four, or six cis double bonds per chain, or with a saturated sn-1 chain and one, four, or six cis double bonds in the sn-2 chain were determined by the neutral buoyancy method. Experiments were conducted in the liquid crystalline lamellar phase over the temperature range from 5 to 35 degrees C. It is demonstrated that the molecular volume of phosphatidylcholines can be well approximated as the sum of a constant volume of the polar lipid head region and the temperature-dependent volumes of hydrocarbon chain CH2, CH, and terminal CH3 groups. A linear dependence of chain segment volumes on temperature was observed. A self-consistent set of partially temperature-dependent volumes is obtained that allows prediction of phosphatidylcholine molecular volumes within very tight error margins.

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http://dx.doi.org/10.1016/j.bbamem.2005.07.006DOI Listing

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