Marrow Stem Cells Shift Gene Expression and Engraftment Phenotype with Cell Cycle Transit

Author:

Lambert Jean-François12,Liu Meng3,Colvin Gerald A.1,Dooner Mark1,McAuliffe Christina I.1,Becker Pamela S.4,Forget Bernard G.5,Weissman Sherman M.5,Quesenberry Peter J.1

Affiliation:

1. Roger Williams Medical Center, Providence, RI 02908

2. Division of Hematology, University Hospital, CH1211 Geneva 14, Switzerland

3. Schepens Eye Research Institute, Harvard University, Boston, MA 02114

4. University of Massachusetts Cancer Center, Worcester, MA 01655

5. Department of Genetics, Yale University School of Medicine, New Haven, CT 06520

Abstract

We studied the genetic and engraftment phenotype of highly purified murine hematopoietic stem cells (lineage negative, rhodamine-low, Hoechst-low) through cytokine-stimulated cell cycle. Cells were cultured in interleukin (IL)-3, IL-6, IL-11, and steel factor for 0 to 48 h and tested for engraftment capacity in a lethally irradiated murine competitive transplant model. Engraftment showed major fluctuations with nadirs at 36 and 48 h of culture and recovery during the next G1. Gene expression of quiescent (0 h) or cycling (48 h) stem cells was compared with lineage positive cells by 3′ end PCR differential display analysis. Individual PCR bands were quantified using a 0 to 9 scale and results were visually compared using color-coded matrices. We defined a set of 637 transcripts expressed in stem cells and not expressed in lineage positive cells. Gene expression analyzed at 0 and 48 h showed a major shift from “stem cell genes” being highly expressed at 0 h and turned off at 48 h, while “cell division” genes were turned on at 48 h. These observations suggest stem cell gene expression shifts through cell cycle in relation to cell cycle related alterations of stem cell phenotype. The engraftment defect is related to a major phenotypic change of the stem cell.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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