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Whole exome sequencing to identify genetic markers for trastuzumab-induced cardiotoxicity
Chihiro Udagawa1,2, Hiromi Nakamura3, Hiroshi Ohnishi1,2
1Division of Genetics, National Cancer Center Research Institute, Tokyo, Japan.
Abstract:
Although trastuzumab-induced cardiotoxicity is an important determinant to limit the use of this drug, the molecular mechanism of risk for this toxicity is not well understood. To identify genetic variants determining the risk of trastuzumab-induced cardiotoxicity, we carried out whole exome sequencing of germline DNA samples from 9 patients with trastuzumab-induced cardiotoxicity, and conducted a case-control association study of 2258 genetic variants between 9 cases (with trastuzumab-induced cardiotoxicity) and general Japanese population controls registered in the Human Genetic Variation Database (HGVD). The top variant which showed the lowest P-value in the screening study was rs139503277 in PHD Finger Protein 3 (Pmin = .00012, odds ratio [OR] = 51.23). To further validate the result of screening study, we carried out a replication study of 10 variants showing Pmin < .001 in the screening study using 234 independent patients treated with trastuzumab, including 10 cases and 224 controls (without trastuzumab-induced cardiotoxicity). In the replication study, we observed that three variants had an effect in the same direction as in the screening study (rs78272919 in exon 2 of Keratin 15, rs5762940 in exon 2 of zinc and ring finger 3, and rs139944387 in exon 44 of Eyes shut homologs [EYS]). A combined result of the screening and the replication studies suggested an association of a locus on chromosome 6q12 with trastuzumab-induced cardiotoxicity (rs139944387 in EYS, combined Pmin = .00056, OR = 13.73). This finding provides new insights into personalized trastuzumab therapy for patients with human epidermal growth factor receptor 2 (HER2)-positive cancer.
Insights
Genetic variants linked to trastuzumab-induced cardiotoxicity were identified. A locus on chromosome 6q12, specifically in the EYS gene, shows a significant association, paving the way for personalized cancer therapy.
Area of Science:
- Genetics
- Pharmacology
- Oncology
Background:
- Trastuzumab is a crucial therapy for HER2-positive cancers but can cause cardiotoxicity, limiting its use.
- The precise genetic mechanisms underlying trastuzumab-induced cardiotoxicity remain largely unknown.
- Identifying genetic risk factors is essential for predicting and mitigating this adverse drug reaction.
Purpose of the Study:
- To discover genetic variants associated with the risk of developing trastuzumab-induced cardiotoxicity.
- To validate potential genetic markers through replication studies.
- To provide insights for personalized trastuzumab treatment strategies.
Main Methods:
- Whole exome sequencing of germline DNA from 9 patients with trastuzumab-induced cardiotoxicity.
- Case-control association study comparing 2258 genetic variants in cases versus Japanese population controls (HGVD).
- Replication study of top candidate variants in an independent cohort of 234 patients treated with trastuzumab.
Main Results:
- Screening identified rs139503277 in PHD Finger Protein 3 as a top variant (Pmin = .00012, OR = 51.23).
- Replication study highlighted three variants (rs78272919, rs5762940, rs139944387) with consistent effects.
- Combined analysis revealed a significant association of a locus on chromosome 6q12 (rs139944387 in EYS, combined Pmin = .00056, OR = 13.73) with cardiotoxicity.
Conclusions:
- A specific genetic locus on chromosome 6q12 is associated with trastuzumab-induced cardiotoxicity.
- The Eyes shut homologs (EYS) gene harbors a variant linked to increased cardiotoxicity risk.
- These findings support the development of personalized approaches for trastuzumab therapy in HER2-positive cancer patients.
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