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Published on: November 19, 2019
ONECUT2 reprograms neuroendocrine fate and is an actionable therapeutic target in small cell lung cancer
Mirian Gutiérrez1, Irene Zamora1, Raquel Iriarte1
1Department of Health Sciences, Public University of Navarre, Pamplona, Navarre, Spain.
Abstract:
Small cell lung cancer (SCLC) is a highly aggressive malignancy with extremely poor prognosis. SCLC cells exhibit high plasticity and can progress from neuroendocrine (NE) to non-NE phenotypes. This dynamic evolution promotes treatment resistance and relapses, representing a challenge for targeted therapies in this elusive disease. Here we identify the transcription factor ONECUT2 (OC2) as a driver of plasticity in SCLC, leading to non-NE transcriptional states. OC2 is highly expressed in SCLC tumors compared to normal lung tissue and its expression is associated with heightened clinical stage and lymph node metastasis. We show that OC2 is a repressor of ASCL1, the NE master regulator transcription factor. In addition, OC2 upregulates non-NE programs through activation of c-MYC and Notch signaling. We also demonstrate that OC2 is required for growth and survival of SCLC cells and that it can be targeted with a small molecule inhibitor that acts synergistically with the standard combination of cisplatin and etoposide, providing a novel therapeutic strategy for OC2 active SCLC tumors.
Insights
Small cell lung cancer plasticity is driven by the transcription factor ONECUT2 (OC2), promoting treatment resistance. Targeting OC2 offers a new therapeutic strategy for aggressive SCLC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Small cell lung cancer (SCLC) is aggressive with poor prognosis.
- SCLC plasticity allows phenotype switching, causing treatment resistance and relapse.
- Targeted therapies for SCLC remain a significant challenge.
Purpose of the Study:
- Identify key drivers of SCLC plasticity.
- Investigate the role of transcription factor ONECUT2 (OC2) in SCLC.
- Explore OC2 as a therapeutic target for SCLC.
Main Methods:
- Analysis of OC2 expression in SCLC tumors.
- Investigated OC2's regulatory role on ASCL1, c-MYC, and Notch signaling.
- Evaluated OC2 inhibition in combination with standard chemotherapy.
Main Results:
- OC2 is upregulated in SCLC and linked to advanced stage and metastasis.
- OC2 represses the neuroendocrine regulator ASCL1 and promotes non-NE programs.
- OC2 inhibition synergizes with cisplatin and etoposide, reducing SCLC growth and survival.
Conclusions:
- ONECUT2 (OC2) drives SCLC plasticity towards non-NE states.
- OC2 is essential for SCLC cell growth and survival.
- Targeting OC2 presents a promising therapeutic strategy for SCLC.
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