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Patched-2 functions to limit Patched-1 deficient skin cancer growth
Veronique L Veenstra1,2, Ilse Dingjan1,3, Cynthia Waasdorp1
1Laboratory for Experimental Oncology and Radiobiology, Center for Experimental and Molecular Medicine, Cancer Center Amsterdam and Academic Medical Center, Meibergdreef 9, 1105AZ, Amsterdam, The Netherlands.
Purpose:
Basal cell carcinoma (BCC) is one of the most common skin cancers, and is typically driven by an aberrantly activated Hedgehog (Hh) pathway. The Hh pathway is regulated by interactions between the Patched-1 (Ptch1) and Smoothened (Smo) receptors. Smo is an activating receptor and is subject to inhibition by Ptch1. Following ligand binding to Ptch1, its inhibitory action is relieved and pathway activation occurs. This receptor interaction is pivotal to restraining uncontrolled cellular growth. Both receptors have been found to be frequently mutated in BCCs. Ptch2 is a Ptch1 paralog that exhibits overlapping functions in both normal development and tissue homeostasis. As yet, its contribution to cancer growth is poorly defined. Here we set out to assess how Ptch2 inhibits BCC growth.
Methods:
We used several in vitro readouts for transcriptional and chemotactic Hh signaling in BCC-derived ASZ001 cells, and a novel xenograft model to assess in vivo BCC tumor growth. Gene editing by TALEN was used to untangle the different Ptch2-dependent responses to its ligand sonic hedgehog (Shh).
Results:
We first defined the signaling competence of Ptch2 in Ptch1-deficient ASZ001 cells in vitro, and found that Ptch2 ligand binding drives their migration rather than eliciting a transcriptional response. We found that subsequent targeting of Ptch2 abrogated the chemotaxic effect. Next, we tested the contribution of Ptch2 to in vivo tumor growth using a xenograft model and found that reduced Ptch function results in increased tumor growth, but that selective pressure appatently acts against complete Ptch2 ablation.
Conclusions:
We conclude that like Ptch1, Ptch2 exerts a tumor-suppressive function in BCC cells, and that after targeting of both paralogs, ligand-independent activation of the Hh pathway contributes to tumor growth.
Insights
Patched-2 (Ptch2) inhibits basal cell carcinoma (BCC) growth by driving cell migration, similar to Ptch1. Loss of Ptch2 function increases BCC tumor growth, indicating its tumor-suppressive role in skin cancer.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- Basal cell carcinoma (BCC) is a common skin cancer driven by the Hedgehog (Hh) signaling pathway.
- The Hh pathway is regulated by Patched-1 (Ptch1) and Smoothened (Smo) receptors; Ptch1 inhibits Smo, and mutations in both are common in BCC.
- Ptch2, a paralog of Ptch1, has overlapping functions, but its role in cancer is not well understood.
Purpose of the Study:
- To investigate the inhibitory role of Ptch2 in BCC growth.
- To determine how Ptch2 influences Hh pathway signaling in BCC cells.
Main Methods:
- Utilized in vitro assays for transcriptional and chemotactic Hh signaling in BCC-derived ASZ001 cells.
- Employed TALEN gene editing to analyze Ptch2-dependent responses to sonic hedgehog (Shh).
- Established a xenograft model to assess in vivo BCC tumor growth.
Main Results:
- In Ptch1-deficient cells, Ptch2 binding to its ligand stimulated cell migration, not transcriptional changes.
- Targeting Ptch2 diminished the chemotactic effect.
- Reduced Ptch function, including Ptch2, led to increased tumor growth in vivo, though complete Ptch2 ablation was not favored under selective pressure.
Conclusions:
- Ptch2 functions as a tumor suppressor in BCC, akin to Ptch1.
- Inhibition of both Ptch1 and Ptch2 allows for ligand-independent Hh pathway activation, contributing to tumor progression.
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