Differentiation of primitive human multipotent hematopoietic progenitors into single lineage clonogenic progenitors is accompanied by alterations in their interaction with fibronectin.
Open Access
- 1 September 1991
- journal article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 174 (3), 693-703
- https://doi.org/10.1084/jem.174.3.693
Abstract
We have previously demonstrated that primitive progenitors from human bone marrow termed long term bone marrow culture initiating cells (LTBMC-IC) adhere avidly to irradiated bone marrow stroma, while more mature clonogenic progenitors fail to do so. In this study we examine the interaction between these progenitors and components of the bone marrow stroma. (a) We demonstrate that both primitive LTBMC-IC and more mature clonogenic progenitors adhere to intact fibronectin. (b) Primitive LTBMC-IC and multi-lineage CFU-MIX progenitors adhere to the 33/66 kD COOH-terminal heparin-binding cell-adhesion promoting fragment of fibronectin, but adhere significantly less to its 75 kD RGDS-dependent cell-binding fragment. In contrast, more differentiated single-lineage progenitors adhere equally well to the 33/66 kD RGDS independent and the 75 kD RGDS-dependent cell-adhesion fragments of fibronectin. (c) Both primitive LTBMC-IC and clonogenic progenitors adhere to the three known cell-attachment sites in the 33/66 kD cell-adhesion promoting fragment, FN-C/H I, FN-C/H II and CS1. However, LTBMC-IC and CFU-MIX progenitors adhere significantly better to FN-C/H II than to the flanking FN-C/H I and CS1 cell-attachment sites. In contrast, single-lineage progenitors adhere equally well to all three cell attachment sites in the 33/66 kD cell-adhesion promoting fragment. (d) Finally, adhesion of primitive LTBMC-IC to intact irradiated stroma can be inhibited partially by peptide FN-C/H II and almost completely by a combination of FN-C/H II and peptide FN-C/H I and CS1. This study demonstrates that adhesive interactions between primitive hematopoietic progenitors and the extracellular matrix component fibronectin can occur. Specific changes in adhesion to the 33/66 kD cell-adhesion promoting fragment and the 75 kD RGDS-dependent cell-adhesion fragment of fibronectin are associated with differentiation of primitive multi-lineage progenitors into committed single-lineage progenitors. Such differences in adhesive interaction with fibronectin may allow hematopoietic progenitors at various stages of differentiation to interact with specific supportive loci of the bone marrow microenvironment. Finally, the ability to block adhesion of LTBMC-IC to intact irradiated stroma with peptides FN-C/H II, FN-C/H I and CS1 suggests that receptors responsible for this interaction may be important in the homing of primitive progenitors to the bone marrow.Keywords
This publication has 45 references indexed in Scilit:
- SUCCESSFUL AUTOGRAFTING IN CHRONIC MYELOID-LEUKEMIA AFTER MAINTENANCE OF MARROW IN CULTURE1989
- DUAL ROLE OF FIBRONECTIN IN HEMATOPOIETIC DIFFERENTIATION1989
- LINEAGE-SPECIFIC AND STAGE-SPECIFIC ADHESION OF HUMAN HEMATOPOIETIC PROGENITOR CELLS TO EXTRACELLULAR MATRICES FROM MARROW FIBROBLASTS1988
- Haemonectin, a bone marrow adhesion protein specific for cells of granulocyte lineageNature, 1987
- In vitro homing of hemopoietic stem cells is mediated by a recognition system with galactosyl and mannosyl specificities.Proceedings of the National Academy of Sciences, 1987
- DIFFERENTIAL BINDING OF ERYTHROID AND MYELOID PROGENITORS TO FIBROBLASTS AND FIBRONECTIN1987
- Identification of two distinct regions of the type III connecting segment of human plasma fibronectin that promote cell type-specific adhesion.Journal of Biological Chemistry, 1987
- Homing of hemopoietic precursor cells to the embryonic thymus: characterization of an invasive mechanism induced by chemotactic peptides.The Journal of cell biology, 1986
- Human fibronectin contains distinct adhesion- and motility-promoting domains for metastatic melanoma cells.The Journal of cell biology, 1986
- Extracellular matrix promotes the growth and differentiation of murine hematopoietic cells in vitro.Journal of Clinical Investigation, 1985