Wetting and capillary condensation as means of protein organization in membranes

Tamir Gil, Mads C. Sabra, John Hjort Ipsen, Ole G. Mouritsen*

*Corresponding author for this work

    Research output: Contribution to journalJournal articleResearchpeer-review

    59 Citations (Scopus)

    Abstract

    Wetting and capillary condensation are thermodynamic phenomena in which the special affinity of interfaces to a thermodynamic phase, relative to the stable bulk phase, leads to the stabilization of a wetting phase at the interfaces. Wetting and capillary condensation are here proposed as mechanisms that in membranes may serve to induce special lipid phases in between integral membrane proteins leading to long-range lipid-mediated joining forces acting between the proteins and hence providing a means of protein organization. The consequences of wetting in terms of protein aggregation and protein clustering are derived both within a simple phenomenological theory as well as within a concrete calculation on a microscopic model of lipid-protein interactions that accounts for the lipid bilayer phase equilibria and direct lipid-protein interactions governed by hydrophobic matching between the lipid bilayer hydrophobic thickness and the length of the hydrophobic membrane domain. The theoretical results are expected to be relevant for optimizing the experimental conditions required for forming protein aggregates and regular protein arrays in membranes.

    Original languageEnglish
    JournalBiophysical Journal
    Volume73
    Issue number4
    Pages (from-to)1728-1741
    Number of pages14
    ISSN0006-3495
    DOIs
    Publication statusPublished - Oct 1997

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