Skip to main navigation Skip to search Skip to main content

Interdigitation of long-chain sphingomyelin induces coupling of membrane leaflets in a cholesterol dependent manner

  • Tomasz Róg
  • , Adam Orłowski
  • , Alicia Llorente
  • , Tore Skotland
  • , Tuulia Sylvänne
  • , Dimple Kauhanen
  • , Kim Ekroos
  • , Kirsten Sandvig
  • , Ilpo Vattulainen*
  • *Corresponding author for this work
    • Tampere University of Technology
    • University of Limerick
    • Oslo University Hospital
    • University of Oslo
    • Zora Biosciences Oy
    • University of Helsinki

    Research output: Contribution to journalJournal articleResearchpeer-review

    Abstract

    It has been a long-standing question how the two leaflets in a lipid bilayer modulate each others' physical properties. In this paper, we discuss how this interaction may take place through interdigitation. We use atomistic molecular dynamics simulations to consider asymmetric lipid membrane models whose compositions are based on the lipidomics data determined for exosomes released by PC-3 prostate cancer cells. The simulations show interdigitation to be exceptionally strong for long-chain sphingomyelin (SM) molecules. In asymmetric membranes the amide-linked chain of SM is observed to extend deep into the opposing membrane leaflet. Interestingly, we find that the conformational order of the amide-linked SM chain increases the deeper it penetrates to the opposing leaflet. Analysis of this finding reveals that the amide-linked SM chain interacts favorably with the lipid chains in the opposite leaflet, and that cholesterol modulates the effect of SM interdigitation by influencing the conformational order of lipid hydrocarbon chains in the opposing (cytosolic) leaflet.

    Original languageEnglish
    JournalBBA Biomembranes
    Volume1858
    Issue number2
    Pages (from-to)281-288
    ISSN0005-2736
    DOIs
    Publication statusPublished - 2016

    Keywords

    • Cholesterol
    • Computer simulation
    • Exosome
    • Interdigitation
    • Lipid membrane
    • Lipidomics
    • Molecular dynamics simulation
    • Sphingomyelin

    Fingerprint

    Dive into the research topics of 'Interdigitation of long-chain sphingomyelin induces coupling of membrane leaflets in a cholesterol dependent manner'. Together they form a unique fingerprint.

    Cite this