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Published on: January 12, 2020
Identification of a Notch transcriptomic signature for breast cancer
Eike-Benjamin Braune1, Felix Geist2, Xiaojia Tang3
1Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
Background:
Dysregulated Notch signalling contributes to breast cancer development and progression, but validated tools to measure the level of Notch signalling in breast cancer subtypes and in response to systemic therapy are largely lacking. A transcriptomic signature of Notch signalling would be warranted, for example to monitor the effects of future Notch-targeting therapies and to learn whether altered Notch signalling is an off-target effect of current breast cancer therapies. In this report, we have established such a classifier.
Methods:
To generate the signature, we first identified Notch-regulated genes from six basal-like breast cancer cell lines subjected to elevated or reduced Notch signalling by culturing on immobilized Notch ligand Jagged1 or blockade of Notch by γ-secretase inhibitors, respectively. From this cadre of Notch-regulated genes, we developed candidate transcriptomic signatures that were trained on a breast cancer patient dataset (the TCGA-BRCA cohort) and a broader breast cancer cell line cohort and sought to validate in independent datasets.
Results:
An optimal 20-gene transcriptomic signature was selected. We validated the signature on two independent patient datasets (METABRIC and Oslo2), and it showed an improved coherence score and tumour specificity compared with previously published signatures. Furthermore, the signature score was particularly high for basal-like breast cancer, indicating an enhanced level of Notch signalling in this subtype. The signature score was increased after neoadjuvant treatment in the PROMIX and BEAUTY patient cohorts, and a lower signature score generally correlated with better clinical outcome.
Conclusions:
The 20-gene transcriptional signature will be a valuable tool to evaluate the response of future Notch-targeting therapies for breast cancer, to learn about potential effects on Notch signalling from conventional breast cancer therapies and to better stratify patients for therapy considerations.
Insights
Researchers developed a 20-gene signature to measure Notch signalling in breast cancer. This tool can monitor Notch-targeting therapies and assess effects of current treatments, aiding patient stratification for breast cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Dysregulated Notch signalling is implicated in breast cancer progression.
- Validated tools to quantify Notch signalling levels in breast cancer subtypes and during therapy are lacking.
- A transcriptomic signature is needed to monitor Notch-targeting therapies and investigate off-target effects of current treatments.
Purpose of the Study:
- To establish a transcriptomic signature for measuring Notch signalling in breast cancer.
- To enable monitoring of Notch signalling in response to systemic therapy.
- To identify potential off-target effects of breast cancer therapies on Notch signalling.
Main Methods:
- Identified Notch-regulated genes in basal-like breast cancer cell lines with altered Notch signalling.
- Developed candidate transcriptomic signatures using Notch-regulated genes.
- Trained and validated signatures on breast cancer patient and cell line datasets (TCGA-BRCA, METABRIC, Oslo2).
Main Results:
- Selected an optimal 20-gene transcriptomic signature with improved coherence and tumour specificity.
- The signature score was highest in basal-like breast cancer, indicating elevated Notch signalling.
- Signature scores increased post-neoadjuvant treatment, and lower scores correlated with better clinical outcomes.
Conclusions:
- The 20-gene signature serves as a valuable tool for evaluating responses to future Notch-targeting therapies.
- It can help understand the impact of conventional breast cancer therapies on Notch signalling.
- The signature aids in better patient stratification for therapeutic considerations.
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