Primitive human hematopoietic cells give rise to differentially specified daughter cells upon their initial cell division
- 1 March 2006
- journal article
- Published by American Society of Hematology in Blood
- Vol. 107 (5) , 2146-2152
- https://doi.org/10.1182/blood-2005-08-3139
Abstract
It is often predicted that stem cells divide asymmetrically, creating a daughter cell that maintains the stem-cell capacity, and 1 daughter cell committed to differentiation. While asymmetric stem-cell divisions have been proven to occur in model organisms (eg, in Drosophila), it remains illusive whether primitive hematopoietic cells in mammals actually can divide asymmetrically. In our experiments we have challenged this question and analyzed the developmental capacity of separated offspring of primitive human hematopoietic cells at a single-cell level. We show for the first time that the vast majority of the most primitive, in vitro–detectable human hematopoietic cells give rise to daughter cells adopting different cell fates; 1 inheriting the developmental capacity of the mother cell, and 1 becoming more specified. In contrast, approximately half of the committed progenitor cells studied gave rise to daughter cells, both of which adopted the cell fate of their mother. Although our data are compatible with the model of asymmetric cell division, other mechanisms of cell fate specification are discussed. In addition, we describe a novel human hematopoietic progenitor cell that has the capacity to form natural killer (NK) cells as well as macrophages, but not cells of other myeloid lineages.Keywords
This publication has 44 references indexed in Scilit:
- Identification of Flt3+ Lympho-Myeloid Stem Cells Lacking Erythro-Megakaryocytic PotentialCell, 2005
- A multifactorial analysis of umbilical cord blood, adult bone marrow and mobilized peripheral blood progenitors using the improved ML-IC assayExperimental Hematology, 2005
- Kinetics and symmetry of divisions of hematopoietic stem cellsExperimental Hematology, 2005
- Segregation of lipid raft markers including CD133 in polarized human hematopoietic stem and progenitor cellsBlood, 2004
- Identification of the haematopoietic stem cell niche and control of the niche sizeNature, 2003
- Osteoblastic cells regulate the haematopoietic stem cell nicheNature, 2003
- Functional analysis of initial cell divisions defines the subsequent fate of individual human CD34+CD38− cellsExperimental Hematology, 2002
- The AFT024 stromal cell line supports long-term ex vivo maintenance of engrafting multipotent human hematopoietic progenitorsLeukemia, 2002
- Multi-Organ, Multi-Lineage Engraftment by a Single Bone Marrow-Derived Stem CellCell, 2001
- Lineage commitment in human hemopoiesis involves asymmetric cell division of multipotent progenitors and does not appear to be influenced by cytokinesJournal of Cellular Physiology, 1993