Erk and MAPK signaling is essential for intestinal development through Wnt pathway modulation
Wei, Gaigai; Gao, Na; Chen, Jiwei; Fan, Lingling; Zeng, Zhiyang; Gao, Ganglong; Li, Liang; Fang, Guojiu; Hu, Kewen; Pang, Xiufeng; Fan, Heng Yu; Clevers, Hans; Liu, Mingyao; Zhang, Xueli; Li, Dali
(2020) Development (Cambridge, England), volume 147, issue 17
(Article)
Abstract
Homeostasis of intestinal stem cells (ISCs) is maintained by the orchestration of niche factors and intrinsic signaling networks. Here, we have found that deletion of Erk1 and Erk2 (Erk1/2) in intestinal epithelial cells at embryonic stages resulted in an unexpected increase in cell proliferation and migration, expansion of ISCs, and
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formation of polyp-like structures, leading to postnatal death. Deficiency of epithelial Erk1/2 results in defects in secretory cell differentiation as well as impaired mesenchymal cell proliferation and maturation. Deletion of Erk1/2 strongly activated Wnt signaling through both cell-autonomous and non-autonomous mechanisms. In epithelial cells, Erk1/2 depletion resulted in loss of feedback regulation, leading to Ras/Raf cascade activation that transactivated Akt activity to stimulate the mTor and Wnt/β-catenin pathways. Moreover, Erk1/2 deficiency reduced the levels of Indian hedgehog and the expression of downstream pathway components, including mesenchymal Bmp4 - a Wnt suppressor in intestines. Inhibition of mTor signaling by rapamycin partially rescued Erk1/2 depletion-induced intestinal defects and significantly prolonged the lifespan of mutant mice. These data demonstrate that Erk/Mapk signaling functions as a key modulator of Wnt signaling through coordination of epithelial-mesenchymal interactions during intestinal development.
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Keywords: Hedgehog signaling, Intestinal stem cell, MAPK, Mesenchymal cell, Wnt signaling, Molecular Biology, Developmental Biology
ISSN: 1477-9129
Publisher: Company of Biologists Ltd
Note: Funding Information: We thank Dr Lingheng Li for providing us with the p-β-catenin ser552 antibody. We thank Dr Stefan Siwko in the Texas A&M University Health Science Center for scientific editing and comments. This work was supported by ECNU Public Platform for innovation (011). Funding Information: This work was funded by grants from the National Natural Science Foundation of China (81670470, 81873685 and 81874140), by grants from the Shanghai Municipal Commission for Science and Technology (18411953500 and 16140902000), by a grant from the Innovation program of Shanghai Municipal Education Commission (2019-01-07-00-05-E00054) and by the Fundamental Research Funds for the Central Universities. Publisher Copyright: © 2020. Published by The Company of Biologists Ltd
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