BCR-ABL enhances differentiation of long-term repopulating hematopoietic stem cells

Author:

Schemionek Mirle1,Elling Christian1,Steidl Ulrich2,Bäumer Nicole1,Hamilton Ashley3,Spieker Tilmann4,Göthert Joachim R.5,Stehling Martin6,Wagers Amy7,Huettner Claudia S.8,Tenen Daniel G.9,Tickenbrock Lara10,Berdel Wolfgang E.1,Serve Hubert11,Holyoake Tessa L.3,Müller-Tidow Carsten1,Koschmieder Steffen1

Affiliation:

1. Department of Medicine, Hematology and Oncology, University of Münster, Münster, Germany;

2. Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY;

3. Section of Experimental Haematology, University of Glasgow, Glasgow, United Kingdom;

4. Department of Pathology, University of Münster, Münster, Germany;

5. Department of Hematology, University of Duisburg-Essen, Essen, Germany;

6. Max-Planck-Institute of Molecular Biomedicine, Münster, Germany;

7. Joslin Diabetes Center, Department of Stem Cell and Regenerative Biology, Harvard University, and Harvard Stem Cell Institute, Boston, MA;

8. Department of Molecular Oncology, Dana-Farber Cancer Institute, Boston, MA;

9. Harvard Stem Cell Institute, Harvard Medical School, Boston, MA and Cancer Science Institute, National University of Singapore, Singapore;

10. University of Applied Science, Hochschule Hamm-Lippstadt, Hamm, Germany; and

11. Department of Medicine, Hematology and Oncology, University of Frankfurt, Frankfurt, Germany

Abstract

Abstract In a previously developed inducible transgenic mouse model of chronic myeloid leukemia, we now demonstrate that the disease is transplantable using BCR-ABL+ Lin−Sca-1+c-kit+ (LSK) cells. Interestingly, the phenotype is more severe when unfractionated bone marrow cells are transplanted, yet neither progenitor cells (Lin−Sca-1−c-kit+), nor mature granulocytes (CD11b+Gr-1+), nor potential stem cell niche cells (CD45−Ter119−) are able to transmit the disease or alter the phenotype. The phenotype is largely independent of BCR-ABL priming before transplantation. However, prolonged BCR-ABL expression abrogates the potential of LSK cells to induce full-blown disease in secondary recipients and increases the fraction of multipotent progenitor cells at the expense of long-term hematopoietic stem cells (LT-HSCs) in the bone marrow. BCR-ABL alters the expression of genes involved in proliferation, survival, and hematopoietic development, probably contributing to the reduced LT-HSC frequency within BCR-ABL+ LSK cells. Reversion of BCR-ABL, or treatment with imatinib, eradicates mature cells, whereas leukemic stem cells persist, giving rise to relapsed chronic myeloid leukemia on reinduction of BCR-ABL, or imatinib withdrawal. Our results suggest that BCR-ABL induces differentiation of LT-HSCs and decreases their self-renewal capacity.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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