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Updated: Jun 27, 2025

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Published on: January 12, 2020
NRN1 interacts with Notch to increase oncogenic STAT3 signaling in melanoma
Lucia Devitt1, Dana Westphal2,3, Katharina Pieger1
1Institute of Biochemistry, Friedrich-Alexander-University Erlangen-Nürnberg, Fahrstrasse 17, Erlangen, 91054, Germany.
Background:
Melanoma is a highly heterogeneous cancer, in which frequent changes in activation of signaling pathways lead to a high adaptability to ever changing tumor microenvironments. The elucidation of cancer specific signaling pathways is of great importance, as demonstrated by the inhibitor of the common BrafV600E mutation PLX4032 in melanoma treatment. We therefore investigated signaling pathways that were influenced by neurotrophin NRN1, which has been shown to be upregulated in melanoma.
Methods:
Using a cell culture model system with an NRN1 overexpression, we investigated the influence of NRN1 on melanoma cells' functionality and signaling. We employed real time cell analysis and spheroid formation assays, while for investigation of molecular mechanisms we used a kinase phosphorylation kit as well as promotor activity analysis followed by mRNA and protein analysis.
Results:
We revealed that NRN1 interacts directly with the cleaved intracellular domain (NICD) of Notch1 and Notch3, causing a potential retention of NICD in the cytoplasm and thereby reducing the expression of its direct downstream target Hes1. This leads to decreased sequestration of JAK and STAT3 in a Hes1-driven phosphorylation complex. Consequently, our data shows less phosphorylation of STAT3 while presenting an accumulation of total protein levels of STAT3 in association with NRN1 overexpression. The potential of the STAT3 signaling pathway to act in both a tumor suppressive and oncogenic manner led us to investigate specific downstream targets - namely Vegf A, Mdr1, cMet - which were found to be upregulated under oncogenic levels of NRN1.
Conclusions:
In summary, we were able to show that NRN1 links oncogenic signaling events between Notch and STAT3 in melanoma. We also suggest that in future research more attention should be payed to cellular regulation of signaling molecules outside of the classically known phosphorylation events.
Insights
Neurotrophin NRN1 links Notch and STAT3 signaling in melanoma, promoting oncogenic pathways. This study reveals NRN1
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Background:
- Melanoma exhibits high heterogeneity and adaptability, driven by signaling pathway alterations.
- Targeting specific melanoma pathways, like BRAF V600E, has shown therapeutic success.
- Neurotrophin NRN1 is upregulated in melanoma, suggesting a role in cancer progression.
Purpose of the Study:
- To investigate the influence of NRN1 on melanoma cell functionality and signaling.
- To elucidate the molecular mechanisms by which NRN1 affects melanoma signaling pathways.
- To identify specific downstream targets regulated by NRN1 in melanoma.
Main Methods:
- Utilized a melanoma cell culture model with NRN1 overexpression.
- Employed real-time cell analysis and spheroid formation assays.
- Investigated molecular mechanisms using kinase phosphorylation kits, promoter activity analysis, and mRNA/protein analysis.
Main Results:
- NRN1 directly interacts with Notch1 and Notch3 intracellular domains, retaining them in the cytoplasm.
- This interaction reduces Hes1 expression, leading to decreased JAK/STAT3 sequestration and STAT3 phosphorylation.
- NRN1 overexpression upregulates oncogenic targets Vegf A, Mdr1, and cMet, indicating a pro-tumorigenic role.
Conclusions:
- NRN1 acts as a crucial link between Notch and STAT3 oncogenic signaling in melanoma.
- The findings highlight NRN1's role in promoting melanoma progression through altered signaling.
- Future research should explore non-phosphorylation-dependent regulatory mechanisms of signaling molecules.
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