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Lipid droplet biogenesis is spatially coordinated at ER–vacuole contacts under nutritional stress
Authors:Hanaa Hariri  Sean Rogers  Rupali Ugrankar  Yang Lydia Liu  J Ryan Feathers  W Mike Henne
Institution:Department of Cell Biology, UT Southwestern Medical Center, Dallas, TX, USA
Abstract:Eukaryotic cells store lipids in cytosolic organelles known as lipid droplets (LDs). Lipid droplet bud from the endoplasmic reticulum (ER), and may be harvested by the vacuole for energy during prolonged periods of starvation. How cells spatially coordinate LD production is poorly understood. Here, we demonstrate that yeast ER–vacuole contact sites (NVJs) physically expand in response to metabolic stress, and serve as sites for LD production. NVJ tether Mdm1 demarcates sites of LD budding, and interacts with fatty acyl‐CoA synthases at the NVJ periphery. Artificially expanding the NVJ through over‐expressing Mdm1 is sufficient to drive NVJ‐associated LD production, whereas ablating the NVJ induces defects in fatty acid‐to‐triglyceride production. Collectively, our data suggest a tight metabolic link between nutritional stress and LD biogenesis that is spatially coordinated at ER–vacuole contact sites.
Keywords:endoplasmic reticulum  lipid droplet  membrane contact site  nuclear ER–  vacuole junction  nutritional stress
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