TY - JOUR
T1 - Epithelial Wntless is dispensable for intestinal tumorigenesis in mouse models
AU - Gao, Ganglong
AU - Wei, Gaigai
AU - Liu, Shijie
AU - Chen, Jiwei
AU - Zeng, Zhiyang
AU - Zhang, Xinyan
AU - Chen, Fangrui
AU - Zhuo, Lingang
AU - Hsu, Wei
AU - Li, Dali
AU - Liu, Mingyao
AU - Zhang, Xueli
N1 - Publisher Copyright:
© 2019 Elsevier Inc.
PY - 2019/11/19
Y1 - 2019/11/19
N2 - Wnt signaling is essential for the maintenance of adult stem cells and its aberrant activation is a stimulator of carcinogenesis. The transmembrane protein, Wntless, is an essential Wnt signaling component through regulating the secretion of Wnt ligands. Here, we generated a mouse model with specific Wntless knockout in intestinal epithelium to study its function in the intestinal epithelium. Wntless knockout exhibits no obvious defects in mice but significantly disrupted proliferation and differentiation of small intestinal organoids. We also discovered that these deficiencies could be partially rescued by Wnt3a supplement but not Wnt9b. To further investigate the role of Wntless in tumorigenesis, APC-deficient spontaneous intestinal tumors and chemical induced colorectal cancer mouse models were employed. To our surprise, intestinal epithelium-specific knockout of Wntless did not cause significant differences in tumor number and size. In summary, our data demonstrated that epithelial Wntless was required for the growth and differentiation of small intestinal organoids but not in live animals, suggesting the other tissues, such as mesenchymal tissue, play critical role for Wnt secretion in both intestinal homeostasis as well as tumorigenesis.
AB - Wnt signaling is essential for the maintenance of adult stem cells and its aberrant activation is a stimulator of carcinogenesis. The transmembrane protein, Wntless, is an essential Wnt signaling component through regulating the secretion of Wnt ligands. Here, we generated a mouse model with specific Wntless knockout in intestinal epithelium to study its function in the intestinal epithelium. Wntless knockout exhibits no obvious defects in mice but significantly disrupted proliferation and differentiation of small intestinal organoids. We also discovered that these deficiencies could be partially rescued by Wnt3a supplement but not Wnt9b. To further investigate the role of Wntless in tumorigenesis, APC-deficient spontaneous intestinal tumors and chemical induced colorectal cancer mouse models were employed. To our surprise, intestinal epithelium-specific knockout of Wntless did not cause significant differences in tumor number and size. In summary, our data demonstrated that epithelial Wntless was required for the growth and differentiation of small intestinal organoids but not in live animals, suggesting the other tissues, such as mesenchymal tissue, play critical role for Wnt secretion in both intestinal homeostasis as well as tumorigenesis.
KW - Colorectal cancer
KW - Intestinal epithelium
KW - Small intestinal organoids
KW - Wntless
UR - https://www.scopus.com/pages/publications/85072295012
U2 - 10.1016/j.bbrc.2019.09.044
DO - 10.1016/j.bbrc.2019.09.044
M3 - 文章
C2 - 31547988
AN - SCOPUS:85072295012
SN - 0006-291X
VL - 519
SP - 754
EP - 760
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 4
ER -