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Silencing of BRCA2 to Identify Novel BRCA2-regulated Biological Functions in Cultured Human Cells
Published on: August 12, 2015
Differential PARP inhibitor responses in BRCA1-deficient and resistant cells in competitive co-culture
Shiella A Soetomo1,2, Michael F Sharp1,2, Wayne Crismani1,2
1St Vincent's Institute of Medical Research, Fitzroy, Victoria, Australia.
Abstract:
Synthetic lethality describes a genetic relationship where the loss of two genes results in cell death, but the loss of one of those genes does not. Drugs used for precision oncology can exploit synthetic lethal relationships; the best described are PARP inhibitors which preferentially kill BRCA1-deficient tumours preferentially over BRCA1-proficient cells. New synthetic lethal targets are often discovered using genetic screens, such as CRISPR knockout screens. Here, we present a competitive co-culture assay that can be used to analyse drugs or gene knockouts with synthetic lethal effects. We generated new BRCA1 isogenic cell line pairs from both a triple-negative breast cancer cell line (SUM149) and adapted pre-existing non-cancerous BRCA1 isogenic pair (RPE). Each cell line of the isogenic pair was transformed with its own fluorescent reporter. The two-coloured cell lines of the isogenic pair were then grown together in the same vessel to create a more competitive environment compared to when grown separately. We used four PARP inhibitors to validate the ability to detect synthetic lethality in BRCA1-deficient cancer cells. The readout of the assay was performed by counting the fluorescently coloured cells after drug treatment using flow cytometry. We observed preferential targeting of BRCA1-deficient cells, by PARPi, at relative concentrations that broadly reflect clinical dosing. Further we reveal subtle differences between PARPi resistant lines compared to BRCA1-proficient cells. Here, we demonstrate the validation and potential use of the competitive assay, which could be extended to validating novel genetic relationships and adapted for live cell imaging.
Insights
This study introduces a new competitive co-culture assay to detect synthetic lethality, a genetic interaction where losing two genes causes cell death. The assay effectively identifies drugs that target BRCA1-deficient cancer cells, advancing precision oncology.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Synthetic lethality is a key concept in precision oncology, where the combined loss of two genes leads to cell death.
- PARP inhibitors (PARPi) exemplify synthetic lethality by targeting BRCA1-deficient tumors.
- Discovering new synthetic lethal targets often relies on genetic screening methods like CRISPR knockout screens.
Purpose of the Study:
- To present and validate a novel competitive co-culture assay for analyzing synthetic lethal interactions.
- To assess the assay's capability in detecting synthetic lethality in BRCA1-deficient cancer cells using PARP inhibitors.
- To explore subtle differences between PARPi-resistant and BRCA1-proficient cells.
Main Methods:
- Generation of BRCA1 isogenic cell line pairs (SUM149 and RPE) with distinct fluorescent reporters.
- Co-culturing of isogenic cell lines to create a competitive environment.
- Treatment with four PARP inhibitors and analysis of cell populations via flow cytometry.
Main Results:
- The assay successfully detected preferential targeting of BRCA1-deficient cells by PARP inhibitors at clinically relevant concentrations.
- Subtle differences were identified between PARPi-resistant and BRCA1-proficient cell lines.
- The competitive assay demonstrated its potential for validating synthetic lethal relationships.
Conclusions:
- The developed competitive co-culture assay is a viable tool for detecting synthetic lethality.
- This assay can be extended to validate novel genetic interactions and adapted for live cell imaging.
- The findings support the use of this assay in advancing precision oncology research.
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