Metabolomics

Dataset Information

Retromer mediates Ypt7-dependent lipid droplet internalization


ABSTRACT:

Lipid droplets (LDs) are dynamic organelles central to cellular energy homeostasis and stress adaptation. Maintaining LD balance is critical for cell function, yet the mechanisms governing selective LD degradation remain unclear. Here, we reveal a pathway promoting efficient vacuolar sequestering and potential degradation of a Pdr16-marked LD subpopulation, thereby linking LD metabolism to organelle communication. During nutrient limitation, the Rab GTPase Ypt7 and its guanine nucleotide exchange factor (GEF) Mon1-Ccz1 specifically localize to Pdr16-LDs. This targeting relies on a conserved amphipathic helix within Ccz1. Importantly, Ypt7 activation recruits the SNX-BAR retromer complex to the vacuole-LD interface at sites of invagination. There, retromer potentially interacts with its cargo receptor Vps10 to promote positive membrane curvature that drives the late stage of vacuolar invagination required for LD internalization and degradation. These findings suggest a link between LD turnover, organelle interactions, and cellular adaptation to metabolic stress, providing new insight into lipid homeostasis.

INSTRUMENT(S): Liquid Chromatography MS - positive - reverse-phase

PROVIDER: MTBLS15038 | MetaboLights | 2026-07-15

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
QC1.zip Other
QC2.zip Other
QC3.zip Other
Vps35_log_1.zip Other
Vps35_log_2.zip Other
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