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Updated: Jun 3, 2026

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
DDR1 receptor tyrosine kinase promotes prosurvival pathway through Notch1 activation
Hyung-Gu Kim1, So-Young Hwang, Stuart A Aaronson
1Cutaneous Biology Research Center, Massachusetts General Hospital and Harvard Medical School, Charlestown, Massachusetts 02129, USA.
Abstract:
DDR1 (discoidin domain receptor tyrosine kinase 1) kinase s highly expressed in a variety of human cancers and occasionally mutated in lung cancer and leukemia. It is now clear that aberrant signaling through the DDR1 receptor is closely associated with various steps of tumorigenesis, although little is known about the molecular mechanism(s) underlying the role of DDR1 in cancer. Besides the role of DDR1 in tumorigenesis, we previously identified DDR1 kinase as a transcriptional target of tumor suppressor p53. DDR1 is functionally activated as determined by its tyrosine phosphorylation, in response to p53-dependent DNA damage. In this study, we report the characterization of the Notch1 protein as an interacting partner of DDR1 receptor, as determined by tandem affinity protein purification. Upon ligand-mediated DDR1 kinase activation, Notch1 was activated, bound to DDR1, and activated canonical Notch1 targets, including Hes1 and Hey2. Moreover, DDR1 ligand (collagen I) treatment significantly increased the active form of Notch1 receptor in the nuclear fraction, whereas DDR1 knockdown cells show little or no increase of the active form of Notch1 in the nuclear fraction, suggesting a novel intracellular mechanism underlying autocrine activation of wild-type Notch signaling through DDR1. DDR1 activation suppressed genotoxic-mediated cell death, whereas Notch1 inhibition by a γ-secretase inhibitor, DAPT, enhanced cell death in response to stress. Moreover, the DDR1 knockdown cancer cells showed the reduced transformed phenotypes in vitro and in vivo xenograft studies. The results suggest that DDR1 exerts prosurvival effect, at least in part, through the functional interaction with Notch1.
Insights
Discoidin domain receptor tyrosine kinase 1 (DDR1) interacts with Notch1, promoting cancer cell survival. This DDR1-Notch1 signaling pathway suppresses cell death and reduces tumor-like behaviors.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Signaling
Background:
- Discoidin domain receptor tyrosine kinase 1 (DDR1) is implicated in tumorigenesis and is a target of tumor suppressor p53.
- The precise molecular mechanisms of DDR1's role in cancer remain largely undefined.
Purpose of the Study:
- To elucidate the molecular mechanisms of DDR1 in cancer.
- To identify interacting partners of DDR1 and characterize their functional relationship.
Main Methods:
- Tandem affinity protein purification to identify DDR1 interacting partners.
- Western blotting and nuclear fractionation to assess protein activation and localization.
- Cell viability assays and in vitro/in vivo xenograft studies to evaluate DDR1's role in cancer phenotypes.
Main Results:
- Notch1 was identified as a DDR1 interacting partner.
- DDR1 activation leads to Notch1 activation, nuclear translocation, and induction of Notch1 targets (Hes1, Hey2).
- DDR1 signaling suppresses genotoxic-induced cell death and reduces cancer cell transformation, while Notch1 inhibition enhances cell death.
Conclusions:
- DDR1 interacts with Notch1, mediating its activation and downstream signaling.
- DDR1 promotes cancer cell survival and reduces transformed phenotypes, partly through functional interaction with Notch1.
- This study reveals a novel DDR1-Notch1 signaling axis involved in cancer progression and survival.
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