Literature DB >> 10733971

Sphingomyelin interfacial behavior: the impact of changing acyl chain composition.

X M Li1, J M Smaby, M M Momsen, H L Brockman, R E Brown.   

Abstract

Sphingomyelins (SMs) containing homogeneous acyl chains with 12, 14, 16, 18, 24, or 26 carbons were synthesized and characterized using an automated Langmuir-type film balance. Surface pressure was monitored as a function of lipid molecular area at constant temperatures between 10 degrees C and 30 degrees C. SM containing lauroyl (12:0) acyl chains displayed only liquid-expanded behavior. Increasing the length of the saturated acyl chain (e.g., 14:0, 16:0, or 18:0) resulted in liquid-expanded to condensed two-dimensional phase transitions at many temperatures in the 10-30 degrees C range. Similar behavior was observed for SMs with lignoceroyl (24:0) or (cerotoyl) 26:0 acyl chains, but isotherms showed only condensed behavior at 10 and 15 degrees C. Insights into the physico-mechanical in-plane interactions occurring within the different SM phases and accompanying changes in SM phase state were provided by analyzing the interfacial area compressibility moduli. At similar surface pressures, SM fluid phases were less compressible than those of phosphatidylcholines with similar chain structures. The area per molecule and compressibility of SM condensed phases depended upon the length of the saturated acyl chain and upon spreading temperature. Spreading of SMs with very long saturated acyl chains at temperatures 30-35 degrees below T(m) resulted in condensed films with lower in-plane compressibilities, but consistently larger cross-sectional molecular areas than the condensed phases achieved by spreading at temperatures only 10-20 degrees below T(m). This behavior is discussed in terms of the enhancement of SM lateral aggregation by temperature reduction, a common approach used during domain isolation from biomembranes.

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Year:  2000        PMID: 10733971      PMCID: PMC1300785          DOI: 10.1016/S0006-3495(00)76740-3

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


  45 in total

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Authors:  J M Smaby; H L Brockman
Journal:  Chem Phys Lipids       Date:  1991-07       Impact factor: 3.329

2.  X-ray scattering of vesicles of N-acyl sphingomyelins. Determination of bilayer thickness.

Authors:  P R Maulik; D Atkinson; G G Shipley
Journal:  Biophys J       Date:  1986-12       Impact factor: 4.033

3.  Elastic deformation and failure of lipid bilayer membranes containing cholesterol.

Authors:  D Needham; R S Nunn
Journal:  Biophys J       Date:  1990-10       Impact factor: 4.033

4.  Surface dipole moments of lipids at the argon-water interface. Similarities among glycerol-ester-based lipids.

Authors:  J M Smaby; H L Brockman
Journal:  Biophys J       Date:  1990-07       Impact factor: 4.033

5.  Interaction of cholesterol with various glycerophospholipids and sphingomyelin.

Authors:  M B Sankaram; T E Thompson
Journal:  Biochemistry       Date:  1990-11-27       Impact factor: 3.162

6.  Nuclear magnetic resonance study of sphingomyelin bilayers.

Authors:  K S Bruzik; B Sobon; G M Salamonczyk
Journal:  Biochemistry       Date:  1990-04-24       Impact factor: 3.162

7.  Interaction of cholesterol with synthetic sphingomyelin derivatives in mixed monolayers.

Authors:  L Grönberg; Z S Ruan; R Bittman; J P Slotte
Journal:  Biochemistry       Date:  1991-11-05       Impact factor: 3.162

Review 8.  Lipid intermolecular hydrogen bonding: influence on structural organization and membrane function.

Authors:  J M Boggs
Journal:  Biochim Biophys Acta       Date:  1987-10-05

9.  Molecular species of sphingomyelin in sphingomyelinase-sensitive and sphingomyelinase-resistant pools of HL-60 cells.

Authors:  V Fitzgerald; M L Blank; F Snyder
Journal:  Lipids       Date:  1995-09       Impact factor: 1.880

10.  Influence of molecular packing and phospholipid type on rates of cholesterol exchange.

Authors:  S Lund-Katz; H M Laboda; L R McLean; M C Phillips
Journal:  Biochemistry       Date:  1988-05-03       Impact factor: 3.162

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  30 in total

1.  Cholesterol decreases the interfacial elasticity and detergent solubility of sphingomyelins.

Authors:  X M Li; M M Momsen; J M Smaby; H L Brockman; R E Brown
Journal:  Biochemistry       Date:  2001-05-22       Impact factor: 3.162

2.  N-Myristoylated Phosphatidylethanolamine: Interfacial Behavior and Interaction with Cholesterol.

Authors:  Xin-Min Li; M Ramakrishnan; Howard L Brockman; Rhoderick E Brown; Musti J Swamy
Journal:  Langmuir       Date:  2002-01-08       Impact factor: 3.882

3.  Coexistence of immiscible mixtures of palmitoylsphingomyelin and palmitoylceramide in monolayers and bilayers.

Authors:  Jon V Busto; María Laura Fanani; Luisina De Tullio; Jesús Sot; Bruno Maggio; Félix M Goñi; Alicia Alonso
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Review 4.  A critical survey of methods to detect plasma membrane rafts.

Authors:  Enrico Klotzsch; Gerhard J Schütz
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2012-12-24       Impact factor: 6.237

5.  Solid character of membrane ceramides: a surface rheology study of their mixtures with sphingomyelin.

Authors:  Elisa R Catapano; Laura R Arriaga; Gabriel Espinosa; Francisco Monroy; Dominique Langevin; Iván López-Montero
Journal:  Biophys J       Date:  2011-12-07       Impact factor: 4.033

6.  The 3-hydroxy group and 4,5-trans double bond of sphingomyelin are essential for modulation of galactosylceramide transmembrane asymmetry.

Authors:  Barbara Malewicz; Jacob T Valiyaveettil; Kochurani Jacob; Hoe-Sup Byun; Peter Mattjus; Wolfgang J Baumann; Robert Bittman; Rhoderick E Brown
Journal:  Biophys J       Date:  2005-01-14       Impact factor: 4.033

7.  Lactosylceramide: effect of acyl chain structure on phase behavior and molecular packing.

Authors:  Xin-Min Li; Maureen M Momsen; Howard L Brockman; Rhoderick E Brown
Journal:  Biophys J       Date:  2002-09       Impact factor: 4.033

8.  Characterization of the lateral distribution of fluorescent lipid in binary-constituent lipid monolayers by principal component analysis.

Authors:  István P Sugár; Xiuhong Zhai; Ivan A Boldyrev; Julian G Molotkovsky; Howard L Brockman; Rhoderick E Brown
Journal:  Int J Biomed Imaging       Date:  2010-04-20

9.  Structure and dynamics of sphingomyelin bilayer: insight gained through systematic comparison to phosphatidylcholine.

Authors:  Perttu Niemelä; Marja T Hyvönen; Ilpo Vattulainen
Journal:  Biophys J       Date:  2004-08-17       Impact factor: 4.033

10.  Membrane domain formation, interdigitation, and morphological alterations induced by the very long chain asymmetric C24:1 ceramide.

Authors:  Sandra N Pinto; Liana C Silva; Rodrigo F M de Almeida; Manuel Prieto
Journal:  Biophys J       Date:  2008-06-27       Impact factor: 4.033

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