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PMID: 26088929 Published · ppublish English

Transcription and methylation analyses of preleukemic promyelocytes indicate a dual role for PML/RARA in leukemia initiation.

Haematologica ·Vol. 100 ·No. 8 ·2016-02-24

Gaillard Coline, Tokuyasu Taku A, Rosen Galit, Sotzen Jason, Vitaliano-Prunier Adeline, Roy Ritu, Passegué Emmanuelle, de Thé Hugues, Figueroa Maria E, Kogan Scott C

Abstract

Acute promyelocytic leukemia is an aggressive malignancy characterized by the accumulation of promyelocytes in the bone marrow. PML/RARA is the primary abnormality implicated in this pathology, but the mechanisms by which this chimeric fusion protein initiates disease are incompletely understood. Identifying PML/RARA targets in vivo is critical for comprehending the road to pathogenesis. Utilizing a novel sorting strategy, we isolated highly purified promyelocyte populations from normal and young preleukemic animals, carried out microarray and methylation profiling analyses, and compared the results from the two groups of animals. Surprisingly, in the absence of secondary lesions, PML/RARA had an overall limited impact on both the transcriptome and methylome. Of interest, we did identify down-regulation of secondary and tertiary granule genes as the first step engaging the myeloid maturation block. Although initially not sufficient to arrest terminal granulopoiesis in vivo, such alterations set the stage for the later, complete differentiation block seen in leukemia. Further, gene set enrichment analysis revealed that PML/RARA promyelocytes exhibit a subtle increase in expression of cell cycle genes, and we show that this leads to both increased proliferation of these cells and expansion of the promyelocyte compartment. Importantly, this proliferation signature was absent from the poorly leukemogenic p50/RARA fusion model, implying a critical role for PML in the altered cell-cycle kinetics and ability to initiate leukemia. Thus, our findings challenge the predominant model in the field and we propose that PML/RARA initiates leukemia by subtly shifting cell fate decisions within the promyelocyte compartment.

MeSH 主题词
Animals Antigens, CD34/metabolism Cell Proliferation Cell Transformation, Neoplastic/genetics,metabolism Cluster Analysis DNA Methylation Disease Models, Animal Gene Expression Profiling Gene Expression Regulation, Leukemic Granulocyte Precursor Cells/metabolism,pathology Humans Immunophenotyping Leukemia, Promyelocytic, Acute/genetics,metabolism,pathology Mice Mice, Transgenic Neoplastic Stem Cells/metabolism Oncogene Proteins, Fusion/genetics,metabolism Transcription, Genetic
Article Info
Journal
Haematologica
Abbr.
Haematologica
Published
2016-02-24
Indexed
2015-08-28
Updated
2016-10-19
Language
English
Country/Region
Italy
NLM ID
0417435
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