ArticleThe Journal of cell biology2024
De novo lipid synthesis and polarized prenylation drive cell invasion through basement membrane.
Article in The Journal of cell biology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
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Who cites it
4 citing papers in PubMed.
- Lysosomal lipid metabolism promotes tumor cell invasion through local energetics and membrane lipid remodeling.bioRxiv : the preprint server for biology · 2026Article
- Specialized high-capacity mitochondria fuel cell invasion.Current biology : CB · 2026Article
- A collagen IV fluorophore knock-in toolkit reveals trimer diversity in C. elegans basement membranes.The Journal of cell biology · 2025Article
- Mitochondria-ER contact site components regulate the formation and localization of specialized high-capacity mitochondria in themicroPublication biology · 2025Article
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Authors and funding
6 authors.
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Abstract
To breach the basement membrane, cells in development and cancer use large, transient, specialized lipid-rich membrane protrusions. Using live imaging, endogenous protein tagging, and cell-specific RNAi during Caenorhabditis elegans anchor cell (AC) invasion, we demonstrate that the lipogenic SREBP transcription factor SBP-1 drives the expression of the fatty acid synthesis enzymes POD-2 and FASN-1 prior to invasion. We show that phospholipid-producing LPIN-1 and sphingomyelin synthase SMS-1, which use fatty acids as substrates, produce lysosome stores that build the AC's invasive protrusion, and that SMS-1 also promotes protrusion localization of the lipid raft partitioning ZMP-1 matrix metalloproteinase. Finally, we discover that HMG-CoA reductase HMGR-1, which generates isoprenoids for prenylation, localizes to the ER and enriches in peroxisomes at the AC invasive front, and that the final transmembrane prenylation enzyme, ICMT-1, localizes to endoplasmic reticulum exit sites that dynamically polarize to deliver prenylated GTPases for protrusion formation. Together, these results reveal a collaboration between lipogenesis and a polarized lipid prenylation system that drives invasive protrusion formation.
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