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A bcr-3 isoform of RARalpha-PML potentiates the development of PML-RARalpha-driven acute promyelocytic leukemia
J L Pollock1, P Westervelt, A K Kurichety
1Washington University School of Medicine, Division of Bone Marrow Transplantation, Department of Internal Medicine, St. Louis, MO 63110, USA.
Abstract:
Acute promyelocytic leukemia (APML) most often is associated with the balanced reciprocal translocation t(15;17) (q22;q11.2) and the expression of both the PML-RARalpha and RARalpha-PML fusion cDNAs that are formed by this translocation. In this report, we investigated the biological role of a bcr-3 isoform of RARalpha-PML for the development of APML in a transgenic mouse model. Expression of RARalpha-PML alone in the early myeloid cells of transgenic mice did not alter myeloid development or cause APML, but its expression significantly increased the penetrance of APML in mice expressing a bcr-1 isoform of PML-RARalpha (15% of animals developed APML with PML-RARalpha alone vs. 57% with both transgenes, P < 0.001). The latency of APML development was not altered substantially by the expression of RARalpha-PML, suggesting that it does not behave as a classical "second hit" for development of the disease. Leukemias that arose from doubly transgenic mice were less mature than those from PML-RARalpha transgenic mice, but they both responded to all-trans retinoic acid in vitro. These findings suggest that PML-RARalpha drives the development of APML and defines its basic phenotype, whereas RARalpha-PML potentiates this phenotype via mechanisms that are not yet understood.
Insights
The PML-RARalpha fusion drives acute promyelocytic leukemia (APML). Co-expression with RARalpha-PML potentiates APML development, suggesting a complex role for this fusion in disease pathogenesis.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- Acute promyelocytic leukemia (APML) is characterized by the t(15;17) translocation.
- This translocation results in PML-RARalpha and RARalpha-PML fusion cDNAs.
Purpose of the Study:
- To investigate the biological role of the RARalpha-PML bcr-3 isoform in APML development.
- To understand the contribution of RARalpha-PML in a transgenic mouse model.
Main Methods:
- Generated transgenic mice expressing RARalpha-PML and/or PML-RARalpha.
- Assessed myeloid development and APML penetrance in these mice.
- Analyzed leukemia latency and cellular maturity.
Main Results:
- RARalpha-PML alone did not induce APML.
- Co-expression with PML-RARalpha significantly increased APML penetrance (15% vs. 57%).
- RARalpha-PML did not alter disease latency but affected leukemia maturity.
Conclusions:
- PML-RARalpha is the primary driver of APML.
- RARalpha-PML potentiates APML development, but its exact mechanism remains unclear.
- Both fusion proteins contribute to the APML phenotype and response to retinoic acid.
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