VEGFR-3 is expressed on megakaryocyte precursors in the murine bone marrow and plays a regulatory role in megakaryopoiesis

Author:

Thiele Wilko12,Krishnan Jaya2,Rothley Melanie12,Weih Debra3,Plaumann Diana2,Kuch Vanessa1,Quagliata Luca1,Weich Herbert A.4,Sleeman Jonathan P.12

Affiliation:

1. Universität Heidelberg, Medizinische Fakultät Mannheim, Mannheim, Germany;

2. Karlsruhe Institute of Technology, Campus Nord, Institut für Toxikologie und Genetik, Karlsruhe, Germany;

3. Leibniz-Institut für Altersforschung–Fritz-Lipmann-Institut, Jena, Germany; and

4. Helmholtz Centre for Infection Research, Division Molecular Biotechnology, Department of Gene Regulation, Braunschweig, Germany

Abstract

Abstract VEGFR-3 is a transmembrane receptor tyrosine kinase that is activated by its ligands VEGF-C and VEGF-D. Although VEGFR-3 has been linked primarily to the regulation of lymphangiogenesis, in the present study, we demonstrate a role for VEGFR-3 in megakaryopoiesis. Using a human erythroleukemia cell line and primary murine BM cells, we show that VEGFR-3 is expressed on megakaryocytic progenitor cells through to the promegakaryoblast stage. Functionally, specific activation of VEGFR-3 impaired the transition to polyploidy of CD41+ cells in primary BM cultures. Blockade of VEGFR-3 promoted endoreplication consistently. In vivo, long-term activation or blockade of VEGFR-3 did not affect steady-state murine megakaryopoiesis or platelet counts significantly. However, activation of VEGFR-3 in sublethally irradiated mice resulted in significantly elevated numbers of CD41+ cells in the BM and a significant increase in diploid CD41+ cells, whereas the number of polyploid CD41+ cells was reduced significantly. Moreover, activation of VEGFR-3 increased platelet counts in thrombopoietin-treated mice significantly and modulated 5-fluorouracil–induced thrombocytosis strongly, suggesting a regulatory role for VEGFR-3 in megakaryopoiesis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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