The coordinated action of VCP/p97 and GCN2 regulates cancer cell metabolism and proteostasis during nutrient limitation.

Details

Serval ID
serval:BIB_8182BA8102EA
Type
Article: article from journal or magazin.
Collection
Publications
Title
The coordinated action of VCP/p97 and GCN2 regulates cancer cell metabolism and proteostasis during nutrient limitation.
Journal
Oncogene
Author(s)
Parzych K., Saavedra-García P., Valbuena G.N., Al-Sadah H.A., Robinson M.E., Penfold L., Kuzeva D.M., Ruiz-Tellez A., Loaiza S., Holzmann V., Caputo V., Johnson D.C., Kaiser M.F., Karadimitris A., Lam E.W., Chevet E., Feldhahn N., Keun H.C., Auner H.W.
ISSN
1476-5594 (Electronic)
ISSN-L
0950-9232
Publication state
Published
Issued date
04/2019
Peer-reviewed
Oui
Volume
38
Number
17
Pages
3216-3231
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Abstract
VCP/p97 regulates numerous cellular functions by mediating protein degradation through its segregase activity. Its key role in governing protein homoeostasis has made VCP/p97 an appealing anticancer drug target. Here, we provide evidence that VCP/p97 acts as a regulator of cellular metabolism. We found that VCP/p97 was tied to multiple metabolic processes on the gene expression level in a diverse range of cancer cell lines and in patient-derived multiple myeloma cells. Cellular VCP/p97 dependency to maintain proteostasis was increased under conditions of glucose and glutamine limitation in a range of cancer cell lines from different tissues. Moreover, glutamine depletion led to increased VCP/p97 expression, whereas VCP/p97 inhibition perturbed metabolic processes and intracellular amino acid turnover. GCN2, an amino acid-sensing kinase, attenuated stress signalling and cell death triggered by VCP/p97 inhibition and nutrient shortages and modulated ERK activation, autophagy, and glycolytic metabolite turnover. Together, our data point to an interconnected role of VCP/p97 and GCN2 in maintaining cancer cell metabolic and protein homoeostasis.
Keywords
A549 Cells, Adenosine Triphosphatases/metabolism, Autophagy/physiology, Cell Line, Tumor, Gene Expression/physiology, Glucose/metabolism, Glutamine/metabolism, Humans, MAP Kinase Signaling System/physiology, MCF-7 Cells, Multiple Myeloma/metabolism, Nuclear Proteins/metabolism, Nutrients/metabolism, PC-3 Cells, Protein Serine-Threonine Kinases/metabolism, Proteolysis, Proteostasis/physiology, Signal Transduction/physiology, Valosin Containing Protein/metabolism
Pubmed
Web of science
Open Access
Yes
Create date
02/12/2024 17:49
Last modification date
04/12/2024 8:07
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