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PML protein expression in hematopoietic and acute promyelocytic leukemia cells
M T Daniel1, M Koken, O Romagné
1Laboratoire d'Hématologie, CNRS 43, Centre Hayem, Paris, France.
Abstract:
Acute promyelocytic leukemia (APL) is thought to be caused by the t(15,17) translocation that fuses the PML gene to that of the retinoic acid receptor alpha (RAR alpha) and generates a PML/RAR alpha fusion protein. Yet, paradoxically, APL cells are exquisitely sensitive to retinoic acid (RA), as they terminally differentiate upon RA exposure. In this report, we have examined the expression of PML and PML/RAR alpha in normal and APL cells. By immunofluorescence or immunocytochemistry, we show that PML has a speckled nuclear pattern of expression that contrasts with that of PML/RAR alpha (mostly a micropunctuated nuclear pattern or a cytoplasmic localization). The APL-derived cell line NB4 that expresses both the PML and PML/RAR alpha genes also shows the fine micropunctuated nuclear pattern, suggesting a dominant effect of the fusion protein over the localization of wild-type PML. RA treatment of NB4 cells or clones expressing PML/RAR alpha gradually leads to a PML pattern before apparent morphologic maturation. In 14 untreated APL patients, the PML-reactive proteins were cytoplasmic (by immunocytochemistry) or both cytoplasmic and nuclear with a micropunctuated pattern (by immunofluorescence). Strikingly, in 4 patients, after 1 to 2 weeks of RA therapy, the speckled nuclear PML pattern reappeared concomitant with the onset of differentiation. These results establish that fusion of PML to RAR alpha results in an altered localization of PML that is reverted upon RA treatment. This observation, which highlights the importance of PML, is likely to be a key to unravelling the molecular mechanism of both leukemogenesis and RA-induced differentiation of APL.
Insights
Acute promyelocytic leukemia (APL) involves a PML/RAR alpha fusion protein altering PML protein localization. Retinoic acid (RA) therapy reverts PML localization, crucial for understanding APL development and RA-induced differentiation.
Area of Science:
- Molecular Biology
- Hematology
- Cell Biology
Background:
- Acute promyelocytic leukemia (APL) is linked to the t(15;17) translocation, creating a PML/RAR alpha fusion protein.
- APL cells paradoxically show high sensitivity to retinoic acid (RA), leading to terminal differentiation.
Purpose of the Study:
- To investigate the expression and localization of PML and PML/RAR alpha proteins in normal and APL cells.
- To understand how retinoic acid (RA) affects PML protein localization during APL cell differentiation.
Main Methods:
- Immunofluorescence and immunocytochemistry were used to visualize PML and PML/RAR alpha protein patterns.
- Analysis was performed on the APL-derived NB4 cell line and primary samples from APL patients before and after RA therapy.
Main Results:
- PML protein exhibits a speckled nuclear pattern, while PML/RAR alpha shows a micropunctuated nuclear or cytoplasmic localization.
- RA treatment of NB4 cells and APL patients led to the reappearance of the speckled nuclear PML pattern, correlating with differentiation.
- In untreated APL patients, PML proteins were primarily cytoplasmic or had a micropunctuated nuclear pattern.
Conclusions:
- The PML/RAR alpha fusion protein alters PML protein localization, which is reversible upon RA treatment.
- Restoration of PML's nuclear localization is linked to RA-induced differentiation in APL.
- These findings are key to understanding APL pathogenesis and the mechanism of RA therapy.