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Published on: January 7, 2019
Sustained leukaemic phenotype after inactivation of BCR-ABLp190 in mice
M Pérez-Caro1, N Gutierrez-Cianca, I González-Herrero
1Laboratorio 13, Instituto de Biología Molecular y Celular del Cáncer, CSIC/Universidad de Salamanca, Campus Unamuno, Salamanca, Spain.
Abstract:
Pharmacological inactivation of cancer genes or products is being used as a strategy for therapy in oncology. To investigate the potential role of BCR-ABLp190 cessation in leukaemia development, we generated mice carrying a tetracycline-repressible BCR-ABLp190 transgene. These mice were morphologically normal at birth, and developed leukaemias. Disease was characterized by the presence of B-cell blasts co-expressing myeloid markers, reminiscent of the human counterpart. BCR-ABLp190 activation can initiate leukaemia in both young and adult mice. Transitory expression of BCR-ABLp190 is enough to develop leukaemia. Suppression of the BCR-ABLp190 transgene in leukaemic CombitTA-p190 mice did not rescue the malignant phenotype, indicating that BCR-ABLp190 is not required to maintain the disease in mice. Similar results were obtained by inactivation of BCR-ABLp190 with STI571 (Gleevec; Novartis, East Hanover, NJ, USA) in leukaemic CombitTA-p190 mice. However, gradual suppression of BCR-ABLp190 in leukaemic CombitTA-p190 mice identified a minimum level of BCR-ABLp190 expression necessary to revert the specific block in B-cell differentiation in the leukaemic cells. Overall, the findings indicate that BCR-ABLp190 appears to cause epigenetic and/or genetic changes in tumour-maintaining cells that render them insensitive to BCR-ABLp190 inactivation.
Insights
BCR-ABLp190 activation initiates leukemia, but its inactivation doesn't maintain the disease. Cancer cells develop resistance to BCR-ABLp190 inactivation due to genetic changes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Pharmacological inactivation of cancer genes is a key therapeutic strategy in oncology.
- The role of BCR-ABLp190 in leukemia development requires further investigation.
Purpose of the Study:
- To investigate the role of BCR-ABLp190 cessation in leukemia development.
- To determine if BCR-ABLp190 is required for maintaining leukemia in mice.
Main Methods:
- Generated mice with a tetracycline-repressible BCR-ABLp190 transgene.
- Administered STI571 (Gleevec) to inactivate BCR-ABLp190.
- Gradually suppressed BCR-ABLp190 expression to assess its impact on leukemia.
Main Results:
- BCR-ABLp190 activation initiated leukemia in both young and adult mice.
- Inactivation of BCR-ABLp190 did not rescue the malignant phenotype, indicating it's not required for disease maintenance.
- A minimum level of BCR-ABLp190 expression was found necessary to revert the block in B-cell differentiation.
Conclusions:
- BCR-ABLp190 causes epigenetic and/or genetic changes in tumor-maintaining cells.
- These changes render leukemia cells insensitive to BCR-ABLp190 inactivation, suggesting resistance mechanisms.

