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A functional genomic screen in vivo identifies CEACAM5 as a clinically relevant driver of breast cancer metastasis

delete2018-04-30
delete38
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OA
AI
E
Emily Powell
J
Jiansu Shao
H
Hector Picon
C
Christopher A. Bristow
Z
Zhongqi Ge
M
Michael Peoples
F
Frederick S. Robinson
S
Sabrina L. Jeter-Jones
C
Christopher Schlosberg
C
Caitlin L. Grzeskowiak
F
Fei Yang
Y
Yun Wu
I
Ignacio I. Wistuba
S
Stacy Moulder
W
W. Fraser Symmans
K
Kenneth L. Scott
J
John R. Edwards
H
Han Liang
T
Timothy P. Heffernan
H
Helen Piwnica‐Worms *
DOI:10.1038/s41523-018-0062-xdelete
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Abstract

Abstract

En 中文
Tumor cells disseminate early in tumor development making metastasis-prevention strategies difficult. Identifying proteins that promote the outgrowth of disseminated tumor cells may provide opportunities for novel therapeutic strategies. Despite multiple studies demonstrating that the mesenchymal-to-epithelial transition (MET) is critical for metastatic colonization, key regulators that initiate this transition remain unknown. We serially passaged lung metastases from a primary triple negative breast cancer xenograft to the mammary fat pads of recipient mice to enrich for gene expression changes that drive metastasis. An unbiased transcriptomic signature of potential metastatic drivers was generated, and a high throughput gain-of-function screen was performed in vivo to validate candidates. Carcinoembryonic antigen-related cell adhesion molecule 5 (CEACAM5) was identified as a metastatic driver. CEACAM5 overproduction enriched for an epithelial gene expression pattern and facilitated tumor outgrowth at metastatic sites. Tissues from patients with metastatic breast cancer confirmed elevated levels of CEACAM5 in lung metastases relative to breast tumors, and an inverse correlation between CEACAM5 and the mesenchymal marker vimentin was demonstrated. Thus, CEACAM5 facilitates tumor outgrowth at metastatic sites by promoting MET, warranting its investigation as a therapeutic target and biomarker of aggressiveness in breast cancer.
Keywords:
EPITHELIAL-MESENCHYMAL TRANSITION
TUMOR-GROWTH
CA 15-3
GENES
DISSEMINATION
CEA
PHOSPHORYLATION
SURVIVAL
THERAPY
BIOLOGY
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Journal

npj Breast Cancer cover
npj Breast Cancer
IF:
7.6
Papers:
1.0K
Citations:
4.2K

Organization

U
utmd anderson cancer center
Scholars:
3.0W
Papers: 2.4W
Citations: 27
U
university of texas system
Scholars:
18.3W
Papers: 15.5W
Citations: 210