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Published on: August 15, 2019
Ataxia-Telangiectasia Mutated Loss-of-Function Displays Variant and Tissue-Specific Differences across Tumor Types
Patrick G Pilié1, Virginia Giuliani2, Wei-Lien Wang3
1Division of Cancer Medicine, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Mutations in the ATM gene are common in multiple cancers, but clinical studies of therapies targeting ATM-aberrant cancers have yielded mixed results. Refinement of ATM loss of function (LOF) as a predictive biomarker of response is urgently needed.
Experimental Design:
We present the first disclosure and preclinical development of a novel, selective ATR inhibitor, ART0380, and test its antitumor activity in multiple preclinical cancer models. To refine ATM LOF as a predictive biomarker, we performed a comprehensive pan-cancer analysis of ATM variants in patient tumors and then assessed the ATM variant-to-protein relationship. Finally, we assessed a novel ATM LOF biomarker approach in retrospective clinical data sets of patients treated with platinum-based chemotherapy or ATR inhibition.
Results:
ART0380 had potent, selective antitumor activity in a range of preclinical cancer models with differing degrees of ATM LOF. Pan-cancer analysis identified 10,609 ATM variants in 8,587 patient tumors. Cancer lineage-specific differences were seen in the prevalence of deleterious (Tier 1) versus unknown/benign (Tier 2) variants, selective pressure for loss of heterozygosity, and concordance between a deleterious variant and ATM loss of protein (LOP). A novel ATM LOF biomarker approach that accounts for variant classification, relationship to ATM LOP, and tissue-specific penetrance significantly enriched for patients who benefited from platinum-based chemotherapy or ATR inhibition.
Conclusions:
These data help to better define ATM LOF across tumor types in order to optimize patient selection and improve molecularly targeted therapeutic approaches for patients with ATM LOF cancers.
Insights
A new drug, ART0380, shows promise against ATM-deficient cancers. A refined biomarker approach improves patient selection for targeted therapies and platinum chemotherapy, enhancing treatment outcomes.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- ATM gene mutations are prevalent in various cancers, yet therapeutic responses to ATM-targeting agents are inconsistent.
- Optimizing ATM loss of function (LOF) as a predictive biomarker is crucial for guiding treatment decisions.
Purpose of the Study:
- To introduce ART0380, a novel selective ATR inhibitor, and evaluate its preclinical antitumor efficacy.
- To refine ATM LOF as a predictive biomarker through pan-cancer variant analysis and assessment of ATM protein levels.
- To validate a novel ATM LOF biomarker in clinical datasets for platinum-based chemotherapy and ATR inhibition.
Main Methods:
- Preclinical testing of ART0380 in diverse cancer models.
- Comprehensive pan-cancer analysis of 10,609 ATM variants in 8,587 tumors.
- Evaluation of ATM variant-protein concordance and tissue-specific penetrance.
- Retrospective analysis of clinical data for biomarker validation.
Main Results:
- ART0380 demonstrated potent and selective antitumor activity across models with varying ATM LOF.
- Identified cancer lineage-specific patterns in ATM variant types, loss of heterozygosity, and ATM loss of protein (LOP) concordance.
- A novel ATM LOF biomarker, considering variant classification, LOP, and penetrance, significantly enriched for responders to platinum chemotherapy and ATR inhibition.
Conclusions:
- Developed a refined ATM LOF biomarker approach for improved patient stratification.
- Optimized patient selection for ATM-deficient cancers to enhance targeted therapy efficacy.
- Provided a foundation for improved molecularly targeted therapeutic strategies in ATM LOF cancers.
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