Structural basis of lipid transfer by a bridge-like lipid-transfer protein
- PMID: 40269155
- DOI: 10.1038/s41586-025-08918-y
Structural basis of lipid transfer by a bridge-like lipid-transfer protein
Abstract
Bridge-like lipid-transport proteins (BLTPs) are an evolutionarily conserved family of proteins that localize to membrane-contact sites and are thought to mediate the bulk transfer of lipids from a donor membrane, typically the endoplasmic reticulum, to an acceptor membrane, such as that of the cell or an organelle1. Although BLTPs are fundamentally important for a wide array of cellular functions, their architecture, composition and lipid-transfer mechanisms remain poorly characterized. Here we present the subunit composition and the cryogenic electron microscopy structure of the native LPD-3 BLTP complex isolated from transgenic Caenorhabditis elegans. LPD-3 folds into an elongated, rod-shaped tunnel of which the interior is filled with ordered lipid molecules that are coordinated by a track of ionizable residues that line one side of the tunnel. LPD-3 forms a complex with two previously uncharacterized proteins, one of which we have named Spigot and the other of which remains unnamed. Spigot interacts with the N-terminal end of LPD-3 where lipids are expected to enter the tunnel, and experiments in multiple model systems indicate that Spigot has a conserved role in BLTP function. Our LPD-3 complex structural data reveal protein-lipid interactions that suggest a model for how the native LPD-3 complex mediates bulk lipid transport and provides a foundation for mechanistic studies of BLTPs.
© 2025. The Author(s), under exclusive licence to Springer Nature Limited.
Conflict of interest statement
Competing interests: The authors declare no competing interests.
Update of
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Structural basis of bulk lipid transfer by bridge-like lipid transfer protein LPD-3.bioRxiv [Preprint]. 2024 Jun 22:2024.06.21.600134. doi: 10.1101/2024.06.21.600134. bioRxiv. 2024. Update in: Nature. 2025 Jun;642(8066):242-249. doi: 10.1038/s41586-025-08918-y. PMID: 38948693 Free PMC article. Updated. Preprint.
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