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Osh proteins regulate COPII-mediated vesicular transport of ceramide from the endoplasmic reticulum in budding yeast
Author(s) -
Kentaro Kajiwara,
Atsuko Ikeda,
Auxiliadora Aguilera-Romero,
Guillaume A. Castillon,
Satoshi Kagiwada,
Kentaro Hanada,
Howard Riezman,
Manuel Muñiz,
Kouichi Funato
Publication year - 2013
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.132001
Subject(s) - copii , copi , golgi apparatus , endoplasmic reticulum , microbiology and biotechnology , biology , ceramide , vesicular transport protein , vesicular transport proteins , vesicle , transport protein , secretory pathway , sphingomyelin , sphingolipid , biochemistry , cytoplasm , vacuole , membrane , apoptosis , vacuolar protein sorting
Lipids synthesized at the endoplasmic reticulum (ER) are delivered to the Golgi by vesicular and non-vesicular pathways. ER-to-Golgi transport is crucial for maintaining the different membrane lipid composition and identities of organelles. Despite their importance, mechanisms regulating transport remain elusive. Here we report that in yeast coat protein complex II (COPII) vesicle-mediated transport of ceramide from the ER to the Golgi requires oxysterol-binding protein homologs, Osh proteins, which have been implicated in lipid homeostasis. Because Osh proteins are not required to transport proteins to the Golgi, these results indicate a specific requirement for the Osh proteins in the transport of ceramide. In addition, we provide evidence that Osh proteins play a negative role in COPII vesicle biogenesis. Together, our data suggest that ceramide transport and sphingolipid levels between the ER and Golgi are maintained by two distinct functions of Osh proteins, which negatively regulate COPII vesicle formation and positively control a later stage, presumably fusion of ceramide-enriched vesicles with Golgi compartments.

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