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Updated: Jul 19, 2026

Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
Pro-proliferative function of the long isoform of PML-RARalpha involved in acute promyelocytic leukemia
M I Tussié-Luna1, L Rozo, A L Roy
1Department of Pathology, Tufts University School of Medicine, Boston, MA 02111, USA.
Abstract:
The promyelocytic leukemia (PML) gene codes for a tumor suppressor protein that is associated with distinct subnuclear macromolecular structures called the PML bodies. The PML gene is frequently involved in the t(15;17) chromosomal translocation of acute promyelocytic leukemia (APL). The translocation results in a fusion gene product, PML-RARalpha, in which the PML gene fuses to the retinoic acid receptor alpha (RARalpha) gene. PML-RARalpha has been shown to promote transcriptional repression of genes involved in myeloid terminal differentiation and to disrupt the architecture of PML bodies, a phenotype reversed by treatment with all trans retinoic acid (ATRA). However, there are several alternatively spliced isoforms of PML-RARalpha. Here, we addressed the differences between the short and the long isoforms of PML-RARalpha (L and S) since both are associated with APL. We demonstrate that PML-RARalphaL, but not PML-RARalphaS, can directly promote cell growth by transcriptionally activating the pro-proliferative gene, c-fos, in response to mitogenic stimulation. The activity of the PML-RARalphaL is completely sensitive to ATRA. We further show that this activation is not via direct recruitment of the protein to the c-fos promoter but indirectly by altering the chromosomal environment of the c-fos gene, thereby rendering it more accessible to the signal induced transcriptional activators. Our results suggest that in addition to antagonizing the PML-tumor suppressor or the PML-pro-apoptotic activity, PML-RARalpha proteins can also directly promote cell growth by activating c-fos.
Insights
The long isoform of PML-RARalpha (L) directly promotes cell growth by activating the c-fos gene, a process sensitive to ATRA. This occurs indirectly by altering the c-fos gene
Area of Science:
- Molecular Biology
- Cancer Genetics
- Cellular Biology
Background:
- The promyelocytic leukemia (PML) gene encodes a tumor suppressor protein crucial for PML body formation.
- Chromosomal translocation t(15;17) in acute promyelocytic leukemia (APL) creates the PML-RARalpha fusion gene.
- PML-RARalpha disrupts myeloid differentiation and PML body architecture, a phenotype reversed by ATRA.
Purpose of the Study:
- Investigate functional differences between short (S) and long (L) PML-RARalpha isoforms in APL.
- Determine if PML-RARalpha isoforms directly promote cell proliferation.
Main Methods:
- Analysis of alternative splicing variants of PML-RARalpha.
- Assessing transcriptional activation of c-fos by PML-RARalpha isoforms.
- Investigating the mechanism of c-fos activation in response to mitogenic stimulation and ATRA treatment.
Main Results:
- PML-RARalphaL, unlike PML-RARalphaS, directly activates c-fos transcription, promoting cell growth.
- This activation is sensitive to all trans retinoic acid (ATRA).
- Activation occurs indirectly by modifying the c-fos gene's chromosomal environment, not direct promoter recruitment.
Conclusions:
- PML-RARalphaL directly promotes cell proliferation by activating c-fos.
- This oncogenic function is mediated by epigenetic changes at the c-fos locus.
- Findings highlight distinct roles of PML-RARalpha isoforms in APL pathogenesis.
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