YAP1 Mediates Resistance to MEK1/2 Inhibition in Neuroblastomas with Hyperactivated RAS Signaling
Grace E Coggins1,2, Alvin Farrel1,3, Komal S Rathi1,3
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Abstract:
Relapsed neuroblastomas are enriched with activating mutations of the RAS-MAPK signaling pathway. The MEK1/2 inhibitor trametinib delays tumor growth but does not sustain regression in neuroblastoma preclinical models. Recent studies have implicated the Hippo pathway transcriptional coactivator protein YAP1 as an additional driver of relapsed neuroblastomas, as well as a mediator of trametinib resistance in other cancers. Here, we used a highly annotated set of high-risk neuroblastoma cellular models to modulate YAP1 expression and RAS pathway activation to test whether increased YAP1 transcriptional activity is a mechanism of MEK1/2 inhibition resistance in RAS-driven neuroblastomas. In NLF (biallelic NF1 inactivation) and SK-N-AS (NRAS Q61K) cell lines, trametinib caused a near-complete translocation of YAP1 protein into the nucleus. YAP1 depletion sensitized neuroblastoma cells to trametinib, while overexpression of constitutively active YAP1 protein induced trametinib resistance. Mechanistically, significant enhancement of G1-S cell-cycle arrest, mediated by depletion of MYC/MYCN and E2F transcriptional output, sensitized RAS-driven neuroblastomas to trametinib following YAP1 deletion. These findings underscore the importance of YAP activity in response to trametinib in RAS-driven neuroblastomas, as well as the potential for targeting YAP in a trametinib combination. SIGNIFICANCE: High-risk neuroblastomas with hyperactivated RAS signaling escape the selective pressure of MEK inhibition via YAP1-mediated transcriptional reprogramming and may be sensitive to combination therapies targeting both YAP1 and MEK.
Insights
Activating RAS-MAPK pathway mutations drive relapsed neuroblastomas. Targeting YAP1 alongside MEK inhibitors like trametinib may overcome resistance in these aggressive pediatric cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Relapsed neuroblastomas often harbor RAS-MAPK pathway activating mutations.
- MEK1/2 inhibitor trametinib shows limited efficacy in neuroblastoma models.
- YAP1 is implicated in relapsed neuroblastomas and drug resistance.
Purpose of the Study:
- To investigate if YAP1 transcriptional activity mediates resistance to MEK1/2 inhibition in RAS-driven neuroblastomas.
- To explore the role of YAP1 in trametinib resistance in neuroblastoma cell lines.
Main Methods:
- Utilized neuroblastoma cell lines with NF1 inactivation and NRAS mutations.
- Modulated YAP1 expression (depletion and overexpression) and RAS pathway activation.
- Assessed YAP1 protein localization, cell-cycle arrest, and gene expression changes (MYC/MYCN, E2F).
Main Results:
- Trametinib treatment induced YAP1 nuclear translocation in neuroblastoma cells.
- YAP1 depletion sensitized cells to trametinib, while YAP1 overexpression conferred resistance.
- YAP1 depletion enhanced G1-S cell-cycle arrest, reducing MYC/MYCN and E2F output.
Conclusions:
- YAP1 activity is crucial for neuroblastoma response to trametinib.
- YAP1-mediated transcriptional reprogramming contributes to MEK inhibitor resistance.
- Combination therapy targeting YAP1 and MEK may be effective for RAS-driven neuroblastomas.
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