Litcius/Paper detail

Coupled sterol synthesis and transport machineries at ER–endocytic contact sites

Javier Encinar del Dedo, Isabel María Fernández-Golbano, Laura Pastor, Paula Meler, Cristina Ferrer‐Orta, Elena Rebollo, Maribel Geli

2021The Journal of Cell Biology27 citationsDOIOpen Access PDF

Abstract

Sterols are unevenly distributed within cellular membranes. How their biosynthetic and transport machineries are organized to generate heterogeneity is largely unknown. We previously showed that the yeast sterol transporter Osh2 is recruited to endoplasmic reticulum (ER)-endocytic contacts to facilitate actin polymerization. We now find that a subset of sterol biosynthetic enzymes also localizes at these contacts and interacts with Osh2 and the endocytic machinery. Following the sterol dynamics, we show that Osh2 extracts sterols from these subdomains, which we name ERSESs (ER sterol exit sites). Further, we demonstrate that coupling of the sterol synthesis and transport machineries is required for endocytosis in mother cells, but not in daughters, where plasma membrane loading with accessible sterols and endocytosis are linked to secretion.

Topics & Concepts

Endocytic cycleSterolEndocytosisEndoplasmic reticulumCell biologyBiologySecretionBiochemistryChemistryCholesterolCellCellular transport and secretionFungal and yeast genetics researchLipid Membrane Structure and Behavior
Coupled sterol synthesis and transport machineries at ER–endocytic contact sites | Litcius