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The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model

Omega-O-acyl ceramides such as 32-linoleoyloxydotriacontanoyl sphingosine (Cer[EOS]) are essential components of the lipid skin barrier, which protects our body from excessive water loss and the penetration of unwanted substances. These ceramides drive the lipid assembly to epidermal-specific long p...

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Autores principales: Fandrei, Ferdinand, Havrišák, Tomáš, Opálka, Lukáš, Engberg, Oskar, Smith, Albert A., Pullmannová, Petra, Kučerka, Norbert, Ondrejčeková, Veronika, Demé, Bruno, Nováková, Lucie, Steinhart, Miloš, Vávrová, Kateřina, Huster, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10154977/
https://www.ncbi.nlm.nih.gov/pubmed/36948272
http://dx.doi.org/10.1016/j.jlr.2023.100356
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author Fandrei, Ferdinand
Havrišák, Tomáš
Opálka, Lukáš
Engberg, Oskar
Smith, Albert A.
Pullmannová, Petra
Kučerka, Norbert
Ondrejčeková, Veronika
Demé, Bruno
Nováková, Lucie
Steinhart, Miloš
Vávrová, Kateřina
Huster, Daniel
author_facet Fandrei, Ferdinand
Havrišák, Tomáš
Opálka, Lukáš
Engberg, Oskar
Smith, Albert A.
Pullmannová, Petra
Kučerka, Norbert
Ondrejčeková, Veronika
Demé, Bruno
Nováková, Lucie
Steinhart, Miloš
Vávrová, Kateřina
Huster, Daniel
author_sort Fandrei, Ferdinand
collection PubMed
description Omega-O-acyl ceramides such as 32-linoleoyloxydotriacontanoyl sphingosine (Cer[EOS]) are essential components of the lipid skin barrier, which protects our body from excessive water loss and the penetration of unwanted substances. These ceramides drive the lipid assembly to epidermal-specific long periodicity phase (LPP), structurally much different than conventional lipid bilayers. Here, we synthesized Cer[EOS] with selectively deuterated segments of the ultralong N-acyl chain or deuterated or (13)C-labeled linoleic acid and studied their molecular behavior in a skin lipid model. Solid-state (2)H NMR data revealed surprising molecular dynamics for the ultralong N-acyl chain of Cer[EOS] with increased isotropic motion toward the isotropic ester-bound linoleate. The sphingosine moiety of Cer[EOS] is also highly mobile at skin temperature, in stark contrast to the other LPP components, N-lignoceroyl sphingosine acyl, lignoceric acid, and cholesterol, which are predominantly rigid. The dynamics of the linoleic chain is quantitatively described by distributions of correlation times and using dynamic detector analysis. These NMR results along with neutron diffraction data suggest an LPP structure with alternating fluid (sphingosine chain-rich), rigid (acyl chain-rich), isotropic (linoleate-rich), rigid (acyl-chain rich), and fluid layers (sphingosine chain-rich). Such an arrangement of the skin barrier lipids with rigid layers separated with two different dynamic “fillings” i) agrees well with ultrastructural data, ii) satisfies the need for simultaneous rigidity (to ensure low permeability) and fluidity (to ensure elasticity, accommodate enzymes, or antimicrobial peptides), and iii) offers a straightforward way to remodel the lamellar body lipids into the final lipid barrier.
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spelling pubmed-101549772023-05-04 The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model Fandrei, Ferdinand Havrišák, Tomáš Opálka, Lukáš Engberg, Oskar Smith, Albert A. Pullmannová, Petra Kučerka, Norbert Ondrejčeková, Veronika Demé, Bruno Nováková, Lucie Steinhart, Miloš Vávrová, Kateřina Huster, Daniel J Lipid Res Research Article Omega-O-acyl ceramides such as 32-linoleoyloxydotriacontanoyl sphingosine (Cer[EOS]) are essential components of the lipid skin barrier, which protects our body from excessive water loss and the penetration of unwanted substances. These ceramides drive the lipid assembly to epidermal-specific long periodicity phase (LPP), structurally much different than conventional lipid bilayers. Here, we synthesized Cer[EOS] with selectively deuterated segments of the ultralong N-acyl chain or deuterated or (13)C-labeled linoleic acid and studied their molecular behavior in a skin lipid model. Solid-state (2)H NMR data revealed surprising molecular dynamics for the ultralong N-acyl chain of Cer[EOS] with increased isotropic motion toward the isotropic ester-bound linoleate. The sphingosine moiety of Cer[EOS] is also highly mobile at skin temperature, in stark contrast to the other LPP components, N-lignoceroyl sphingosine acyl, lignoceric acid, and cholesterol, which are predominantly rigid. The dynamics of the linoleic chain is quantitatively described by distributions of correlation times and using dynamic detector analysis. These NMR results along with neutron diffraction data suggest an LPP structure with alternating fluid (sphingosine chain-rich), rigid (acyl chain-rich), isotropic (linoleate-rich), rigid (acyl-chain rich), and fluid layers (sphingosine chain-rich). Such an arrangement of the skin barrier lipids with rigid layers separated with two different dynamic “fillings” i) agrees well with ultrastructural data, ii) satisfies the need for simultaneous rigidity (to ensure low permeability) and fluidity (to ensure elasticity, accommodate enzymes, or antimicrobial peptides), and iii) offers a straightforward way to remodel the lamellar body lipids into the final lipid barrier. American Society for Biochemistry and Molecular Biology 2023-03-21 /pmc/articles/PMC10154977/ /pubmed/36948272 http://dx.doi.org/10.1016/j.jlr.2023.100356 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Fandrei, Ferdinand
Havrišák, Tomáš
Opálka, Lukáš
Engberg, Oskar
Smith, Albert A.
Pullmannová, Petra
Kučerka, Norbert
Ondrejčeková, Veronika
Demé, Bruno
Nováková, Lucie
Steinhart, Miloš
Vávrová, Kateřina
Huster, Daniel
The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title_full The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title_fullStr The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title_full_unstemmed The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title_short The intriguing molecular dynamics of Cer[EOS] in rigid skin barrier lipid layers requires improvement of the model
title_sort intriguing molecular dynamics of cer[eos] in rigid skin barrier lipid layers requires improvement of the model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10154977/
https://www.ncbi.nlm.nih.gov/pubmed/36948272
http://dx.doi.org/10.1016/j.jlr.2023.100356
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