Back to Search Start Over

A DERL3-associated defect in the degradation of SLC2A1 mediates the Warburg effect

Authors :
Massachusetts Institute of Technology. Department of Biology
Koch Institute for Integrative Cancer Research at MIT
Vander Heiden, Matthew G.
Lopez-Serra, Paula
Marcilla, Miguel
Villanueva, Alberto
Ramos-Fernandez, Antonio
Palau, Anna
Wahi, Jessica E.
Setien-Baranda, Fernando
Szczesna, Karolina
Moutinho, Catia
Martinez-Cardus, Anna
Heyn, Holger
Sandoval, Juan
Puertas, Sara
Vidal, August
Sanjuan, Xavier
Martinez-Balibrea, Eva
Viñals, Francesc
Perales, Jose C.
Bramsem, Jesper B.
Andersen, Claus L.
Tabernero, Josep
McDermott, Ultan
Boxer, Matthew B.
Albar, Juan Pablo
Esteller, Manel
Leal, Lucia
Orntoft, Torben F.
Massachusetts Institute of Technology. Department of Biology
Koch Institute for Integrative Cancer Research at MIT
Vander Heiden, Matthew G.
Lopez-Serra, Paula
Marcilla, Miguel
Villanueva, Alberto
Ramos-Fernandez, Antonio
Palau, Anna
Wahi, Jessica E.
Setien-Baranda, Fernando
Szczesna, Karolina
Moutinho, Catia
Martinez-Cardus, Anna
Heyn, Holger
Sandoval, Juan
Puertas, Sara
Vidal, August
Sanjuan, Xavier
Martinez-Balibrea, Eva
Viñals, Francesc
Perales, Jose C.
Bramsem, Jesper B.
Andersen, Claus L.
Tabernero, Josep
McDermott, Ultan
Boxer, Matthew B.
Albar, Juan Pablo
Esteller, Manel
Leal, Lucia
Orntoft, Torben F.
Source :
Nature Publishing Group
Publication Year :
2015

Abstract

Cancer cells possess aberrant proteomes that can arise by the disruption of genes involved in physiological protein degradation. Here we demonstrate the presence of promoter CpG island hypermethylation-linked inactivation of DERL3 (Derlin-3), a key gene in the endoplasmic reticulum-associated protein degradation pathway, in human tumours. The restoration of in vitro and in vivo DERL3 activity highlights the tumour suppressor features of the gene. Using the stable isotopic labelling of amino acids in cell culture workflow for differential proteome analysis, we identify SLC2A1 (glucose transporter 1, GLUT1) as a downstream target of DERL3. Most importantly, SLC2A1 overexpression mediated by DERL3 epigenetic loss contributes to the Warburg effect in the studied cells and pinpoints a subset of human tumours with greater vulnerability to drugs targeting glycolysis.<br />Seventh Framework Programme (European Commission) (Grant HEALTH-F5-2010-258236-SYSCOL)<br />Seventh Framework Programme (European Commission) (Grant HEALTH-F2-2011-259015-COLTHERES)<br />Cellex Foundation<br />Olga Torres Foundation<br />European Research Council (EPINORC Project Grant Agreement 268626)<br />Spain. Ministerio de Economia y Competividad (MINECO Project SAF2011-22803)<br />Institute of Health Carlos III (RTICC Grant RD12/0036/0039)

Details

Database :
OAIster
Journal :
Nature Publishing Group
Notes :
application/pdf, en_US
Publication Type :
Electronic Resource
Accession number :
edsoai.on1141875734
Document Type :
Electronic Resource