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    Per Haberkant

    Photoactivatable groups meeting the criterion of minimal perturbance allow the investigation of interactions in biological samples. Here, we review the application of photoactivatable groups in lipids enabling the study of protein-lipid... more
    Photoactivatable groups meeting the criterion of minimal perturbance allow the investigation of interactions in biological samples. Here, we review the application of photoactivatable groups in lipids enabling the study of protein-lipid interactions in (biological) membranes. The chemistry of various photoactivatable groups is summarized and the specificity of the interactions detected is discussed. The recent introduction of 'click chemistry' in photocrosslinking of membrane proteins by photo-activatable lipids opens new possibilities for the analysis of crosslinked products and will help to close the gap between proteomics and lipidomics.
    ABSTRACT Bifunctional lipid technology: Cells convert externally added photoactivatable and "clickable" fatty acids into a variety of bifunctional phospholipids that can be covalently linked to their protein-binding... more
    ABSTRACT Bifunctional lipid technology: Cells convert externally added photoactivatable and "clickable" fatty acids into a variety of bifunctional phospholipids that can be covalently linked to their protein-binding partners by irradiation with UV light. Derivatization of the clickable group with a reporter molecule makes it possible to identify and image the lipid-bound proteins in situ.