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PMID: 18199545 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

Critical role of the stress chaperone GRP78/BiP in tumor proliferation, survival, and tumor angiogenesis in transgene-induced mammary tumor development.

Cancer research ·Vol. 68 ·No. 2 ·2008-01-15 ·Pages 498-505

Dong D, Ni M, Li J, Xiong S, Ye W, Virrey JJ, Mao C, Ye R, Wang M, Pen L, Dubeau L, Groshen S, Hofman FM, Lee AS

Abstract

The unfolded protein response (UPR) is an evolutionarily conserved mechanism that activates both proapoptotic and survival pathways to allow eukaryotic cells to adapt to endoplasmic reticulum (ER) stress. Although the UPR has been implicated in tumorigenesis, its precise role in endogenous cancer remains unclear. A major UPR protective response is the induction of the ER chaperone GRP78/BiP, which is expressed at high levels in a variety of tumors and confers drug resistance in both proliferating and dormant cancer cells. To determine the physiologic role of GRP78 in in situ-generated tumor and the consequence of its suppression on normal organs, we used a genetic model of breast cancer in the Grp78 heterozygous mice where GRP78 expression level was reduced by about half, mimicking anti-GRP78 agents that achieve partial suppression of GRP78 expression. Here, we report that Grp78 heterozygosity has no effect on organ development or antibody production but prolongs the latency period and significantly impedes tumor growth. Our results reveal three major mechanisms mediated by GRP78 for cancer progression: enhancement of tumor cell proliferation, protection against apoptosis, and promotion of tumor angiogenesis. Importantly, although partial reduction of GRP78 in the Grp78 heterozygous mice substantially reduces the tumor microvessel density, it has no effect on vasculature of normal organs. Our findings establish that a key UPR target GRP78 is preferably required for pathophysiologic conditions, such as tumor proliferation, survival, and angiogenesis, underscoring its potential value as a novel therapeutic target for dual antitumor and antiangiogenesis activity.

MeSH Terms
Animals Antibody Formation/genetics Apoptosis/genetics Caspases/genetics Cell Proliferation Cell Survival Endoplasmic Reticulum Chaperone BiP Female Gene Expression Regulation, Neoplastic Heat-Shock Proteins/genetics,physiology Heterozygote Male Mammary Neoplasms, Experimental/blood supply,genetics,pathology Mice Mice, Transgenic Molecular Chaperones/genetics,physiology Neovascularization, Pathologic/genetics Transcription Factor CHOP/genetics Transgenes/physiology Tumor Burden/genetics
Chemicals
Ddit3 protein, mouse Endoplasmic Reticulum Chaperone BiP Heat-Shock Proteins Hspa5 protein, mouse Molecular Chaperones Transcription Factor CHOP Caspases
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Dong Dezheng
Department of Biochemistry and Molecular Biology, University of Southern California/Norris Comprehensive Cancer Center, Keck School of Medicine, Los Angeles, California 90089-9176, USA.
Ni Min
Li Jianze
Xiong Shigang
Ye Wei
Virrey Jenilyn J
Mao Changhui
Ye Risheng
Wang Miao
Pen Ligaya
Dubeau Louis
Groshen Susan
Hofman Florence M
Lee Amy S
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2008-01-15
Pages
498-505
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
Grants
NCI NIH HHS · CA 027607 · United States
NCI NIH HHS · CA 111700 · United States
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