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Patient Derived Cell Culture and Isolation of CD133+ Putative Cancer Stem Cells from Melanoma
Published on: March 13, 2013
JNK2 Is Required for the Tumorigenic Properties of Melanoma Cells
Lili Du1, Anna Anderson1, Kimberly Nguyen1,2
1Department of Translational Molecular Pathology , The University of Texas M. D. Anderson Cancer Center , Houston , Texas 77030 , United States.
Abstract:
Overexpression and activation of c-Jun N-terminal kinases (JNKs) have been observed in multiple cancer cell lines and tumor samples. Various JNK isoforms have been reported to promote lung and liver cancer, as well as keratinocyte transformation, suggesting an important role of JNK signaling in promoting tumor development. However, there are three JNK isoforms, and it is unclear how each individual isoform, especially the ubiquitously expressed JNK1 and JNK2, functions in melanoma. Our previous study found that C116S mutations in both JNK1 and JNK2 rendered them insensitive to the covalent pan-JNK inhibitor JNK-IN-8 while retaining kinase activity. To delineate the specific roles of JNK1 and JNK2 in melanoma cell proliferation and invasiveness, we expressed the wild type (WT) and C116S mutants in melanoma cell lines and used JNK-IN-8 to enable chemical-genetic dissection of JNK1 and JNK2 activity. We found that the JNK2C116S allele consistently enhanced colony proliferation and cell invasiveness in the presence of JNK-IN-8. When cells individually expressing WT or C116S JNK1/2 were subcutaneously implanted into immunodeficient mice, we again found that bypass of JNK-IN-8-mediated inhibition of JNK signaling by expression of JNK2C116S specifically resulted in enhanced tumor growth in vivo. In addition, we observed a high level of JNK pathway activation in some human BRAF inhibitor (BRAFi) resistant melanoma cell lines relative to their BRAFi sensitive isogenic counterparts. JNK-IN-8 significantly enhanced the response to dabrafenib in resistant cells overexpressing JNK1WT, JNK2WT, and JNK1C116S but had no effect on cells expressing JNK2C116S, suggesting that JNK2 signaling is also crucial for BRAFi resistance in a subset of melanomas. Collectively, our data show that JNK2 activity is specifically required for melanoma cell proliferation, invasiveness, and BRAFi resistance and that this activity is most important in the context of JNK1 suppression, thus providing a compelling rationale for the development of JNK2 selective inhibitors as a potential therapy for the treatment of melanoma.
Insights
JNK2 signaling drives melanoma growth and resistance to BRAF inhibitors. Inhibiting JNK2 specifically may offer a new therapeutic strategy for melanoma patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- c-Jun N-terminal kinases (JNKs) are implicated in various cancers, but individual isoform roles in melanoma are unclear.
- JNK1 and JNK2 are ubiquitously expressed, and their specific functions in melanoma progression and drug resistance require elucidation.
- Previous work created JNK1/2 mutants (C116S) resistant to pan-JNK inhibitors, enabling chemical-genetic studies.
Purpose of the Study:
- To determine the specific roles of JNK1 and JNK2 isoforms in melanoma cell proliferation, invasiveness, and resistance to BRAF inhibitors.
- To utilize a chemical-genetic approach with JNK-IN-8 and JNK1/2 wild-type (WT) and C116S mutants to dissect isoform-specific functions.
- To investigate the potential of targeting JNK2 for melanoma therapy.
Main Methods:
- Melanoma cell lines were engineered to express WT or C116S mutants of JNK1 and JNK2.
- A pan-JNK inhibitor (JNK-IN-8) was used to differentiate between JNK1 and JNK2 activity.
- Cell proliferation, invasiveness, and tumor growth in immunodeficient mice were assessed.
- The effect of JNK inhibition on BRAF inhibitor (BRAFi) response in resistant melanoma cells was evaluated.
Main Results:
- JNK2 activity, particularly the JNK2C116S mutant, enhanced melanoma colony proliferation and cell invasiveness.
- Expression of JNK2C116S led to increased tumor growth in vivo, bypassing JNK-IN-8 inhibition.
- JNK pathway activation was elevated in some BRAFi-resistant melanoma cell lines.
- JNK2C116S expression conferred resistance to JNK-IN-8's sensitizing effect on dabrafenib in resistant cells, highlighting JNK2's role in BRAFi resistance.
Conclusions:
- JNK2 activity is essential for melanoma cell proliferation, invasiveness, and resistance to BRAF inhibitors.
- JNK2's role is most significant when JNK1 activity is suppressed.
- Targeting JNK2 specifically presents a promising therapeutic strategy for melanoma, especially in cases of BRAFi resistance.
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