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Tumor-specific apoptosis caused by deletion of the ERBB3 pseudo-kinase in mouse intestinal epithelium
Daekee Lee, Ming Yu, Eunjung Lee, Hyunok Kim, Yanan Yang, Kyoungmi Kim, Christina Pannicia, Jonathan M. Kurie, David W. Threadgill
Daekee Lee, Ming Yu, Eunjung Lee, Hyunok Kim, Yanan Yang, Kyoungmi Kim, Christina Pannicia, Jonathan M. Kurie, David W. Threadgill
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Research Article Oncology

Tumor-specific apoptosis caused by deletion of the ERBB3 pseudo-kinase in mouse intestinal epithelium

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Abstract

Pharmacologic blockade of EGFR or the closely related receptor ERBB2 has modest efficacy against colorectal cancers in the clinic. Although the upregulation of ERBB3, a pseudo-kinase member of the EGFR/ERBB family, is known to contribute to EGFR inhibitor resistance in other cancers, its functions in normal and malignant intestinal epithelium have not been defined. We have shown here that the intestinal epithelium of mice with intestine-specific genetic ablation of Erbb3 exhibits no cytological abnormalities but does exhibit loss of expression of ERBB4 and sensitivity to intestinal damage. By contrast, intestine-specific Erbb3 ablation resulted in almost complete absence of intestinal tumors in the ApcMin mouse model of colon cancer. Unlike nontransformed epithelium lacking ERBB3, intestinal tumors lacking ERBB3 had reduced PI3K/AKT signaling, which led to attenuation of tumorigenesis via a tumor-specific increase in caspase-3–mediated apoptosis. Consistent with the mouse data, which suggest that ERBB3-ERBB4 heterodimers contribute to colon cancer survival, experimentally induced loss of ERBB3 in a KRAS mutant human colon cancer cell line was associated with loss of ERBB4 expression, and siRNA knockdown of either ERBB3 or ERBB4 resulted in elevated levels of apoptosis. These results indicate that the ERBB3 pseudo-kinase has essential roles in supporting intestinal tumorigenesis and suggest that ERBB3 may be a promising target for the treatment of colorectal cancers.

Authors

Daekee Lee, Ming Yu, Eunjung Lee, Hyunok Kim, Yanan Yang, Kyoungmi Kim, Christina Pannicia, Jonathan M. Kurie, David W. Threadgill

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Figure 2

Analysis of intestine-specific Erbb3-knockout mice.

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Analysis of intestine-specific Erbb3-knockout mice.
   
(A) Colon sectio...
(A) Colon sections from mice injected with BrdU for 2 hours before sacrifice were stained with hematoxylin and eosin Y (H&E), immunostained with anti-BrdU antibody, and assayed for TUNEL-positive cells. Original magnification, ×200. (B) Number of BrdU stained cells per crypt in Erbb3 wild-type, heterozygous Erbb3+/–, and Erbb3 mutant mice. (C) Number of TUNEL-positive cells per crypt in wild-type, heterozygous, and Erbb3 mutant mice. (D) Tissue extract prepared from the epithelium of the jejunum from various Erbb3 genotypes analyzed by Western blotting for the indicated markers. Tg, Vil-CreTg/+. Error bars indicate SEM.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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