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April 13, 2026Journal of the American Chemical Society2 citationsOpen Access

Bifunctional Lipid–Protein Cross-linking Efficiency and Reaction Products

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CKCarla KirschbaumHLH. Mathilda LennartzKCKatelyn C. Cook

Key Points

  • The aim is to systematically evaluate the photo-cross-linking efficiency of bifunctional lipid probes using STARD10.
  • Utilized bifunctional diazirine lipids for photo-cross-linking experiments.
  • Measured protein-lipid interactions with lipid transfer protein STARD10.
  • Characterized reaction products through native and denaturing mass spectrometry.
  • Approximately 5% of photoactivated lipids formed covalent protein-lipid cross-links.
  • Most lipids followed intramolecular reaction pathways.
  • Reaction products contained alkene, ketone, and hydroxyl functional groups.

Abstract

Bifunctional diazirine lipids are versatile tools for mapping protein-lipid interactions and cellular localization by photo-cross-linking. Yet, the cross-linking efficiency of these probes has not been systematically evaluated. We use the lipid transfer protein STARD10, which binds phospholipids in a 1:1 stoichiometry within a hydrophobic pocket, to measure the upper limit of the photo-cross-linking efficiency of bifunctional lipid probes. We characterize reaction products using native and denaturing mass spectrometry. Our results show that approximately 5% of photoactivated lipids form covalent protein-lipid cross-links, while the majority follow intramolecular reaction trajectories, resulting in the formation of products featuring alkene, ketone and hydroxyl moieties. These findings provide essential context for the use of bifunctional probes to uncover the cell biology of lipids and highlight the need for continuous improvement to experimental workflows.

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Cite This Study

Kirschbaum et al. (2026) studied this question.

synapsesocial.com/papers/69dc88303afacbeac03ea0edhttps://doi.org/10.1021/jacs.6c01205
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