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Updated: Mar 2, 2026

Integration of Bioinformatics Approaches and Experimental Validations to Understand the Role of Notch Signaling in Ovarian Cancer
Published on: January 12, 2020
Intratumoural heterogeneity generated by Notch signalling promotes small-cell lung cancer
Jing Shan Lim1,2, Alvaro Ibaseta1,2, Marcus M Fischer3
1Department of Pediatrics, Stanford University School of Medicine, Stanford, California 94305, USA.
Abstract:
The Notch signalling pathway mediates cell fate decisions and is tumour suppressive or oncogenic depending on the context. During lung development, Notch pathway activation inhibits the differentiation of precursor cells to a neuroendocrine fate. In small-cell lung cancer, an aggressive neuroendocrine lung cancer, loss-of-function mutations in NOTCH genes and the inhibitory effects of ectopic Notch activation indicate that Notch signalling is tumour suppressive. Here we show that Notch signalling can be both tumour suppressive and pro-tumorigenic in small-cell lung cancer. Endogenous activation of the Notch pathway results in a neuroendocrine to non-neuroendocrine fate switch in 10-50% of tumour cells in a mouse model of small-cell lung cancer and in human tumours. This switch is mediated in part by Rest (also known as Nrsf), a transcriptional repressor that inhibits neuroendocrine gene expression. Non-neuroendocrine Notch-active small-cell lung cancer cells are slow growing, consistent with a tumour-suppressive role for Notch, but these cells are also relatively chemoresistant and provide trophic support to neuroendocrine tumour cells, consistent with a pro-tumorigenic role. Importantly, Notch blockade in combination with chemotherapy suppresses tumour growth and delays relapse in pre-clinical models. Thus, small-cell lung cancer tumours generate their own microenvironment via activation of Notch signalling in a subset of tumour cells, and the presence of these cells may serve as a biomarker for the use of Notch pathway inhibitors in combination with chemotherapy in select patients with small-cell lung cancer.
Insights
Notch signalling in small-cell lung cancer has a dual role, suppressing tumors but also promoting chemoresistance and growth. Blocking Notch with chemotherapy offers a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signalling
Background:
- The Notch signalling pathway is crucial for cell fate determination.
- Its role in small-cell lung cancer (SCLC) is complex, appearing both tumor-suppressive and oncogenic.
- Previous studies suggested Notch is tumor-suppressive in SCLC.
Purpose of the Study:
- To investigate the dual role of Notch signalling in small-cell lung cancer.
- To explore the mechanisms underlying Notch's context-dependent functions.
- To evaluate Notch blockade combined with chemotherapy as a therapeutic approach.
Main Methods:
- Utilized a mouse model of SCLC and human tumor samples.
- Analyzed Notch pathway activation and its effect on cell fate.
- Investigated the role of Rest (Nrsf) in mediating cell fate switch.
- Assessed the efficacy of Notch blockade combined with chemotherapy in pre-clinical models.
Main Results:
- Endogenous Notch activation induces a neuroendocrine to non-neuroendocrine cell fate switch in a subset of SCLC cells.
- Non-neuroendocrine cells exhibit slow growth (tumor-suppressive) but are chemoresistant and support neuroendocrine cells (pro-tumorigenic).
- Notch blockade plus chemotherapy reduced tumor growth and delayed relapse in models.
Conclusions:
- Notch signalling in SCLC exhibits context-dependent tumor-suppressive and pro-tumorigenic roles.
- SCLC tumors can create a supportive microenvironment via Notch activation in a subset of cells.
- Notch pathway inhibitors combined with chemotherapy represent a potential therapeutic strategy for select SCLC patients.
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