Literature DB >> 9533699

Molecular order and dynamics in bilayers consisting of highly polyunsaturated phospholipids.

D C Mitchell1, B J Litman.   

Abstract

The time-resolved fluorescence emission and decay of fluorescence anisotropy of 1,6-diphenyl-1,3,5-hexatriene (DPH) was used to characterize equilibrium and dynamic bilayer structural properties of symmetrically substituted phosphatidylcholines (PCs) with acyl chains containing no, one, four, or six double bonds and mixed-chain phosphatidylcholines with a saturated sn-1 chain and one, four, or six double bonds in the sn-2 chain. Both the Brownian rotational diffusion (BRD) model and the wobble-in-cone model were fit to all differential polarization data, and the descriptions of the data provided by the BRD model were found to be statistically superior. Global analysis of differential polarization data revealed two statistically equivalent solutions. The solution corresponding to a bimodal orientational distribution function, f(theta), was selected based on the effects of temperature on f(theta) and previous measurements on fixed, oriented bilayers. The overall equilibrium acyl chain order in these bilayers was analyzed by comparing the orientational probability distribution for DPH, f(theta) sin theta, with a random orientational distribution. Orientational order decreased and probe dynamics increased in mixed-chain species as the unsaturation of the sn-2 chain was increased. The degree of orientational order dropped dramatically in the dipolyunsaturated species compared with the mixed-chain phosphatidylcholines, which contained a polyunsaturated sn-2 chain. In terms of both orientational order and probe dynamics, the differences between the highly polyunsaturated species and the monounsaturated species were much greater than the differences between the monounsaturated species and a disaturated PC.

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Year:  1998        PMID: 9533699      PMCID: PMC1302567          DOI: 10.1016/S0006-3495(98)74011-1

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  34 in total

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3.  [The study on human placental DHA-S transport mechanism (using placental microvillous membrane vesicles)].

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4.  Resolvability of fluorescence lifetime distributions using phase fluorometry.

Authors:  J R Alcala; E Gratton; F G Prendergast
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Authors:  M Straume; B J Litman
Journal:  Biochemistry       Date:  1988-10-04       Impact factor: 3.162

6.  Effect of orientational order on the decay of the fluorescence anisotropy in membrane suspensions. A new approximate solution of the rotational diffusion equation.

Authors:  W van der Meer; H Pottel; W Herreman; M Ameloot; H Hendrickx; H Schröder
Journal:  Biophys J       Date:  1984-10       Impact factor: 4.033

7.  Equilibrium and dynamic structure of large, unilamellar, unsaturated acyl chain phosphatidylcholine vesicles. Higher order analysis of 1,6-diphenyl-1,3,5-hexatriene and 1-[4-(trimethylammonio)phenyl]- 6-phenyl-1,3,5-hexatriene anisotropy decay.

Authors:  M Straume; B J Litman
Journal:  Biochemistry       Date:  1987-08-11       Impact factor: 3.162

8.  Influence of cholesterol on equilibrium and dynamic bilayer structure of unsaturated acyl chain phosphatidylcholine vesicles as determined from higher order analysis of fluorescence anisotropy decay.

Authors:  M Straume; B J Litman
Journal:  Biochemistry       Date:  1987-08-11       Impact factor: 3.162

9.  The fidelity of response by 1-[4-(trimethylammonio)phenyl]-6-phenyl-1,3,5-hexatriene in time-resolved fluorescence anisotropy measurements on lipid vesicles. Effects of unsaturation, headgroup and cholesterol on orientational order and reorientational dynamics.

Authors:  H van Langen; G van Ginkel; D Shaw; Y K Levine
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10.  The membrane fluidity concept revisited by polarized fluorescence spectroscopy on different model membranes containing unsaturated lipids and sterols.

Authors:  G van Ginkel; H van Langen; Y K Levine
Journal:  Biochimie       Date:  1989-01       Impact factor: 4.079

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7.  Influence of DPH on the structure and dynamics of a DPPC bilayer.

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8.  Enhancement of G protein-coupled signaling by DHA phospholipids.

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