Validation of a drosophila model of wild-type and T315I mutated BCR-ABL1 in chronic myeloid leukemia: An effective platform for treatment screening

Abstract

Chronic myeloid leukemia (CML) is caused by a balanced chromosomal translocation resulting in the formation of BCR-ABL1 fusion gene encoding a constitutively active BCR-ABL1 tyrosine kinase, which activates multiple signal transduction pathways leading to malignant transformation. Standard treatment of CML is based on tyrosine kinase inhibitors (TKI); however, some mutations have proven elusive particularly the T315I mutation. Drosophila melanogaster is an established in vivo model for human diseases including cancer. The targeted expression of chimeric human/fly and full human BCR-ABL1 in Drosophila eyes has been shown to result in detrimental effects. In this study, we expressed human BCR-ABL1p210 and the resistant BCRABL1p210/T315I fusion oncogenes in Drosophila eyes. Expression of BCRABL1p210/T315I resulted in a severe distortion of the ommatidial architecture of adult eyes with a more prominent rough eye phenotype compared to milder phenotypes in BCR-ABL1p210 reflecting a stronger oncogenic potential of the mutant. We then assessed the efficacy of the currently used TKI in BCR-ABL1p210 and BCR-ABL1p210/T315I expressing flies. Treatment of BCR-ABL1p210 expressing flies with potent kinase inhibitors (dasatinib and ponatinib) resulted in the rescue of ommatidial loss and the restoration of normal development. Taken together, we provide a CML tailored BCR-ABL1p210 and BCR-ABL1p210/T315I fly model which can be used to test new compounds with improved therapeutic indices. © 2020 Ferrata Storti Foundation.

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Keywords

Animals, Drosophila, Drosophila melanogaster, Drug resistance, neoplasm, Fusion proteins, bcr-abl, Leukemia, myelogenous, chronic, bcr-abl positive, Protein kinase inhibitors, Bcr abl protein, D 3307, Dasatinib, I 5577, Imatinib, N 8207, Nilotinib, P 7022, Ponatinib, Protein kinase inhibitor, Adult, Article, Cancer screening, Chromosome translocation, Chronic myeloid leukemia, Expression vector, Eye malformation, Field emission scanning electron microscopy, Gene mutation, Gene overexpression, Genetic transformation, Genotype, Human, Image analysis, Nonhuman, Oncogene, Phenotype, Protein expression, Scanning electron microscopy, Scoring system, Signal transduction, T315i gene, Western blotting, Animal, Drug resistance, Genetics

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