Lipid Imbalance Generates Golgi Whorls that Sequester Small GTPases
Zhang, Q.; Tan, W.; Guo, J.; Ashton-Rickardt, I.; Harrison, J.; Birren, S.; Liu, J.; Zhou, J.; Lippincott-Schwartz, J.; Xu, B.
Show abstract
Small GTPases are generally viewed as organizers of organelle identity, with different families recruited to specific membranes by compartment-selective targeting mechanisms. Here, we identify a membrane state that reverses this relationship. Excessive peptide S-palmitoylation at Golgi generates multilamellar, filipin-poor whorls that recruit ARF, Rab, and Rho family GTPases normally associated with distinct cellular compartments. The whorls simultaneously excluded Golgi transmembrane residents, coat proteins, ER proteins, a GPI-anchored protein, and other palmitoylated proteins, demonstrating that they were selective membrane compartments rather than nonspecific protein aggregates. Preventing myristoylation of ARF6 or geranylgeranylation of Rab11a strongly reduced recruitment, whereas prenylation alone was insufficient, indicating recognition of a composite membrane-targeting code. Lowering cellular cholesterol promoted whorl formation, whereas cholesterol supplementation suppressed it. Chemically distinct lipid perturbations generated GTPase-positive Golgi whorls, suggesting convergence on a shared membrane-remodeling state. As whorls accumulated, endocytic recycling and anterograde trafficking declined, survival signaling decreased, and viability became poorly reversible. These findings show that lipid imbalance can redirect small GTPases across normal organelle boundaries, converting Golgi-derived membranes into selective sinks for trafficking regulators.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- GABARAP membrane conjugation sequesters the FLCN-FNIP tumor suppressor complex to activate TFEB and lysosomal biogenesis 96%
- Coupling of protein condensates to ordered lipid domains determines functional membrane organization 96%
- ER-export and ARFRP1/AP-1-dependent delivery of SARS-CoV-2 Envelope to lysosomes controls late stages of viral replication 96%
Similar papers in this journal
- A quantitative ultrastructural timeline of nuclear autophagy reveals a role for dynamin-like protein 1 at the nuclear envelope 96%
- The Troyer syndrome protein spartin mediates selective autophagy of lipid droplets 96%
- Lysosome damage triggers acute formation of ER to lysosomes membrane tethers mediated by the bridge-like lipid transport protein VPS13C 96%
Similar papers in this journal
- ATG2A-mediated bridge-like lipid transport regulates lipid droplet accumulation 95%
- PI(4)P recruits CIDE proteins to promote the formation of unilocular lipid droplets during adipogenesis and hepatic steatosis 95%
- Tubular lysosomes harbor active ion gradients and poise macrophages for phagocytosis 95%
Similar papers in this journal
- Local and substrate-specific S-palmitoylation determines subcellular localization of Gαo 95%
- Synaptic vesicle proteins and ATG9A self-organize in distinct vesicle phases within synapsin condensates 95%
- A tripartite organelle platform links growth factor receptor signaling to mitochondrial metabolism 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.