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  4. Probing the Global Cellular Responses to Lipotoxicity Caused by Saturated Fatty Acids
 
research article

Probing the Global Cellular Responses to Lipotoxicity Caused by Saturated Fatty Acids

Piccolis, Manuele  
•
Bond, Laura M.
•
Kampmann, Martin
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April 4, 2019
Molecular Cell

Excessive levels of saturated fatty acids are toxic to cells, although the basis for this lipotoxicity remains incompletely understood. Here, we analyzed the transcriptome, lipidome, and genetic interactions of human leukemia cells exposed to palmitate. Palmitate treatment increased saturated glycerolipids, accompanied by a transcriptional stress response, including upregulation of the endoplasmic reticulum (ER) stress response. A comprehensive genome-wide short hairpin RNA (shRNA) screen identified >350 genes modulating lipotoxicity. Among previously unknown genetic modifiers of lipotoxicity, depletion of RNF213, a putative ubiquitin ligase mutated in Moyamoya vascular disease, protected cells from lipotoxicity. On a broader level, integration of our comprehensive datasets revealed that changes in di-saturated glycerolipids, but not other lipid classes, are central to lipotoxicity in this model. Consistent with this, inhibition of ER-localized glycerol-3-phosphate acyltransferase activity protected from all aspects of lipotoxicity. Identification of genes modulating the response to saturated fatty acids may reveal novel therapeutic strategies for treating metabolic diseases linked to lipotoxicity.

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Type
research article
DOI
10.1016/j.molcel.2019.01.036
Web of Science ID

WOS:000463340200006

Author(s)
Piccolis, Manuele  
Bond, Laura M.
Kampmann, Martin
Pulimeno, Pamela
Chitraju, Chandramohan
Jayson, Christina B. K.
Vaites, Laura P.
Boland, Sebastian
Lai, Zon Weng
Gabriel, Katlyn R.
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Date Issued

2019-04-04

Publisher

CELL PRESS

Published in
Molecular Cell
Volume

74

Issue

1

Start page

32

End page

44.e8

Subjects

Biochemistry & Molecular Biology

•

Cell Biology

•

endoplasmic-reticulum stress

•

unfolded protein response

•

diacylglycerol acyltransferase

•

hepatic steatosis

•

purification

•

apoptosis

•

rnf213

•

identification

•

palmitate

•

phosphorylation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
VDG  
Available on Infoscience
June 18, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/158008
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