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PMID: 20028872 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Imaging the unfolded protein response in primary tumors reveals microenvironments with metabolic variations that predict tumor growth.

Cancer research ·Vol. 70 ·No. 1 ·2010-01-01 ·Pages 78-88

Spiotto MT, Banh A, Papandreou I, Cao H, Galvez MG, Gurtner GC, Denko NC, Le QT, Koong AC

Abstract

Cancer cells exist in harsh microenvironments that are governed by various factors, including hypoxia and nutrient deprivation. These microenvironmental stressors activate signaling pathways that affect cancer cell survival. While others have previously measured microenvironmental stressors in tumors, it remains difficult to detect the real-time activation of these downstream signaling pathways in primary tumors. In this study, we developed transgenic mice expressing an X-box binding protein 1 (XBP1)-luciferase construct that served as a reporter for endoplasmic reticulum (ER) stress and as a downstream response for the tumor microenvironment. Primary mammary tumors arising in these mice exhibited luciferase activity in vivo. Multiple tumors arising in the same mouse had distinct XBP1-luciferase signatures, reflecting either higher or lower levels of ER stress. Furthermore, variations in ER stress reflected metabolic and hypoxic differences between tumors. Finally, XBP1-luciferase activity correlated with tumor growth rates. Visualizing distinct signaling pathways in primary tumors reveals unique tumor microenvironments with distinct metabolic signatures that can predict for tumor growth.

MeSH Terms
Animals DNA-Binding Proteins/genetics Endoplasmic Reticulum/metabolism Mammary Neoplasms, Experimental/genetics,metabolism,pathology Mice Mice, Transgenic Regulatory Factor X Transcription Factors Signal Transduction/physiology Transcription Factors/genetics Unfolded Protein Response/physiology X-Box Binding Protein 1
Chemicals
DNA-Binding Proteins Regulatory Factor X Transcription Factors Transcription Factors X-Box Binding Protein 1 Xbp1 protein, mouse
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Spiotto Michael T
Department of Radiation Oncology, Stanford University, Stanford, California 94305-5152, USA.
Banh Alice
Papandreou Ioanna
Cao Hongbin
Galvez Michael G
Gurtner Geoffrey C
Denko Nicholas C
Le Quynh Thu
Koong Albert C
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Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2010-01-01
Epub
2009-00-22
Pages
78-88
Language
English
Region
United States
NLM ID
2984705R
PMCID
PMC2943832
Subset
IM
Grants
NCI NIH HHS · P01 CA067166 · United States
NCI NIH HHS · P01 CA067166-12 · United States
NCI NIH HHS · P01 CA67166 · United States
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