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VEGF regulates haematopoietic stem cell survival by an internal autocrine loop mechanism

Author

Listed:
  • Hans-Peter Gerber

    (Genentech, Inc.)

  • Ajay K. Malik

    (Genentech, Inc.)

  • Gregg P. Solar

    (Genentech, Inc.)

  • Daniel Sherman

    (Genentech, Inc.)

  • Xiao Huan Liang

    (Genentech, Inc.)

  • Gloria Meng

    (Genentech, Inc.)

  • Kyu Hong

    (Genentech, Inc.)

  • James C. Marsters

    (Genentech, Inc.)

  • Napoleone Ferrara

    (Genentech, Inc.)

Abstract

Vascular endothelial growth factor (VEGF) is a principal regulator of blood vessel formation and haematopoiesis1,2, but the mechanisms by which VEGF differentially regulates these processes have been elusive. Here we describe a regulatory loop by which VEGF controls survival of haematopoietic stem cells (HSCs). We observed a reduction in survival, colony formation and in vivo repopulation rates of HSCs after ablation of the VEGF gene in mice. Intracellularly acting small-molecule inhibitors of VEGF receptor (VEGFR) tyrosine kinase dramatically reduced colony formation of HSCs, thus mimicking deletion of the VEGF gene. However, blocking VEGF by administering a soluble VEGFR-1, which acts extracellularly, induced only minor effects. These findings support the involvement in HSC survival of a VEGF-dependent internal autocrine loop mechanism (that is, the mechanism is resistant to inhibitors that fail to penetrate the intracellular compartment). Not only ligands selective for VEGF and VEGFR-2 but also VEGFR-1 agonists rescued survival and repopulation of VEGF-deficient HSCs, revealing a function for VEGFR-1 signalling during haematopoiesis.

Suggested Citation

  • Hans-Peter Gerber & Ajay K. Malik & Gregg P. Solar & Daniel Sherman & Xiao Huan Liang & Gloria Meng & Kyu Hong & James C. Marsters & Napoleone Ferrara, 2002. "VEGF regulates haematopoietic stem cell survival by an internal autocrine loop mechanism," Nature, Nature, vol. 417(6892), pages 954-958, June.
  • Handle: RePEc:nat:nature:v:417:y:2002:i:6892:d:10.1038_nature00821
    DOI: 10.1038/nature00821
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