FGF-2 expands murine hematopoietic stem and progenitor cells via proliferation of stromal cells, c-Kit activation, and CXCL12 down-regulation

Author:

Itkin Tomer1,Ludin Aya1,Gradus Ben2,Gur-Cohen Shiri1,Kalinkovich Alexander1,Schajnovitz Amir1,Ovadya Yossi1,Kollet Orit1,Canaani Jonathan1,Shezen Elias1,Coffin Douglas J.3,Enikolopov Grigori N.4,Berg Thorsten56,Piacibello Wanda7,Hornstein Eran2,Lapidot Tsvee1

Affiliation:

1. Departments of Immunology and

2. Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel;

3. Department of Biomedical and Pharmaceutical Sciences, University of Montana, Missoula, MT;

4. Cold Spring Harbor Laboratory, Cold Spring Harbor, NY;

5. Department of Molecular Biology, Max Planck Institute of Biochemistry, Martinsried, Germany;

6. Center for Integrated Protein Science Munich and Institute of Organic Chemistry, University of Leipzig, Leipzig, Germany; and

7. Institute for Cancer Research and Treatment, Laboratory of Clinical Oncology, University of Turin Medical School, Candiolo, Italy

Abstract

Abstract Cytokine-induced expansion of hematopoietic stem and progenitor cells (HSPCs) is not fully understood. In the present study, we show that whereas steady-state hematopoiesis is normal in basic fibroblast growth factor (FGF-2)–knockout mice, parathyroid hormone stimulation and myeloablative treatments failed to induce normal HSPC proliferation and recovery. In vivo FGF-2 treatment expanded stromal cells, including perivascular Nestin+ supportive stromal cells, which may facilitate HSPC expansion by increasing SCF and reducing CXCL12 via mir-31 up-regulation. FGF-2 predominantly expanded a heterogeneous population of undifferentiated HSPCs, preserving and increasing durable short- and long-term repopulation potential. Mechanistically, these effects were mediated by c-Kit receptor activation, STAT5 phosphorylation, and reduction of reactive oxygen species levels. Mice harboring defective c-Kit signaling exhibited abrogated HSPC expansion in response to FGF-2 treatment, which was accompanied by elevated reactive oxygen species levels. The results of the present study reveal a novel mechanism underlying FGF-2–mediated in vivo expansion of both HSPCs and their supportive stromal cells, which may be used to improve stem cell engraftment after clinical transplantation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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