Enforced expression of MLL-AF4 fusion in cord blood CD34+ cells enhances the hematopoietic repopulating cell function and clonogenic potential but is not sufficient to initiate leukemia

Author:

Montes Rosa1,Ayllón Verónica1,Gutierrez-Aranda Ivan1,Prat Isidro2,Hernández-Lamas M. Carmen2,Ponce Laura2,Bresolin Silvia3,te Kronnie Geertruy3,Greaves Mel4,Bueno Clara1,Menendez Pablo1

Affiliation:

1. Andalusian Stem Cell Bank, Centre for Biomedical Research, Consejería de Salud-Universidad de Granada, Granada, Spain;

2. Málaga Cord Blood Bank, Centro Regional de Transfusión, Málaga, Spain;

3. SSD Ematologia-Clinica Sperimentale, Departments of Pediatrics, University of Padova, Padova, Italy; and

4. Section of Haemato-Oncology, Institute of Cancer Research, Sutton, Surrey, United Kingdom

Abstract

AbstractInfant acute lymphoblastic leukemia harboring the fusion mixed-lineage leukemia (MLL)-AF4 is associated with a dismal prognosis and very brief latency. Our limited understanding of transformation by MLL-AF4 is reflected in murine models, which do not accurately recapitulate the human disease. Human models for MLL-AF4 disease do not exist. Hematopoietic stem or progenitor cells (HSPCs) represent probable targets for transformation. Here, we explored in vitro and in vivo the impact of the enforced expression of MLL-AF4 in human cord blood-derived CD34+ HSPCs. Intrabone marrow transplantation into NOD/SCID-IL2Rγ−/− mice revealed an enhanced multilineage hematopoietic engraftment, efficiency, and homing to other hematopoietic sites on enforced expression of MLL-AF4. Lentiviral transduction of MLL-AF4 into CD34+ HSPCs increased the in vitro clonogenic potential of CD34+ progenitors and promoted their proliferation. Consequently, cell cycle and apoptosis analyses suggest that MLL-AF4 conveys a selective proliferation coupled to a survival advantage, which correlates with changes in the expression of genes involved in apoptosis, sensing DNA damage and DNA repair. However, MLL-AF4 expression was insufficient to initiate leukemogenesis on its own, indicating that either additional hits (or reciprocal AF4-MLL product) may be required to initiate ALL or that cord blood-derived CD34+ HSPCs are not the appropriate cellular target for MLL-AF4-mediated ALL.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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