• Title of article

    Erythroid Differentiation in Vitro Is Blocked by Cyclopamine, an Inhibitor of Hedgehog Signaling

  • Author/Authors

    Kristina Detmer، نويسنده , , Anna N. Walker، نويسنده , , Tracie M. Jenkins، نويسنده , , Timothy A. Steele، نويسنده , , Hassan Dannawi، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    13
  • From page
    360
  • To page
    372
  • Abstract
    Adult hematopoietic differentiation is a developmental process that employs many of the same molecular mechanisms as embryogenesis. To explore the possibility that hedgehog signaling is involved in the control of hematopoietic differentiation, we screened a panel of human leukemia cell lines for the expression of Patched1 and Smoothened, the receptor and coreceptor for hedgehog ligands. Expression was found in multiple cell lines, and Patched1 expression was detected in normal marrow. Induction of myeloid differentiation in cell lines downregulated expression of both genes. When normal marrow mononuclear cells were grown in semisolid medium in the presence of 10 μM cyclopamine, development of colonies of granulocytic/monocytic lineage was unaffected in terms of both number and morphology. The number of erythroid colonies, however, was significantly reduced (P< 0.01). Furthermore, hemoglobinization was substantially delayed relative to controls in those erythroid colonies that did form. Incubation of hematopoietic progenitors with Shh-N and GM-CSF resulted in increased granulocyte/monocyte colonies (P< 0.01); the increase was blocked by cyclopamine. Incubation of hematopoietic progenitors with Shh-N and stem cell factor resulted in larger erythroid colonies. These results suggest that elements of the hedgehog signaling pathway are involved in the control of hematopoietic differentiation
  • Keywords
    erythroid differentiation , cyclopamine , hedgehog signaling , Patched , Smoothened. , Hematopoietic progenitors
  • Journal title
    Blood Cells, Molecules and Diseases
  • Serial Year
    2000
  • Journal title
    Blood Cells, Molecules and Diseases
  • Record number

    498331