The Zinc Finger Transcription Factor Egr-1 Activates Macrophage Differentiation in M1 Myeloblastic Leukemia Cells
Open Access
- 15 September 1998
- journal article
- Published by American Society of Hematology in Blood
- Vol. 92 (6) , 1957-1966
- https://doi.org/10.1182/blood.v92.6.1957
Abstract
We previously have shown that the zinc finger transcription factor Egr-1 blocked granulocytic differentiation of HL-60 cells, restricting differentiation along the monocytic lineage. Egr-1 also was observed to block granulocyte colony-stimulating factor (G-CSF)–induced differentiation of interleukin-3 (IL-3)–dependent 32Dcl3 hematopoietic precursor cells, endowing the cells with the ability to be induced by granulocyte-macrophage colony-stimulating factor (GM-CSF) for terminal differentiation along the macrophage lineage. To better understand the function of Egr-1 as a positive modulator of monocytic differentiation, in this work we have studied the effect of ectopic expression of Egr-1 on the murine myeloblastic leukemic cell line M1, which is induced for differentiation by the physiological inducer IL-6. It is shown that, unlike in HL-60 and 32Dcl3 cells, ectopic expression of Egr-1 in M1 cells resulted in activation of the macrophage differentiation program in the absence of differentiation inducer. This included the appearance of morphologically differentiated cells, decreased growth rate in mass culture, and cloning efficiency in soft agar, and expression of endogenous c-myb and c-myc mRNAs was markedly downregulated. Untreated M1Egr-1 cells also exhibited cell adherence, expression of Fc and C3 receptors, and upregulation of the myeloid differentiation primary response genes c-Jun, junD, andjunB and the late genetic markers ferritin light-chainand lysozyme. Ectopic expression of Egr-1 in M1 cells also dramatically increased the sensitivity of the cells for IL-6–induced differentiation, allowed a higher proportion of M1 cells to become terminally differentiated under conditions of optimal stimulation for differentiation, and decreased M1 leukemogenicity in vivo. These findings demonstrate that the functions of Egr-1 as a positive modulator of macrophage differentiation vary, depending on the state of lineage commitment for differentiation of the hematopoietic cell type. © 1998 by The American Society of Hematology.Keywords
This publication has 42 references indexed in Scilit:
- Transcription Factor Egr-1 Regulates Glomerular Mesangial Cell ProliferationPublished by Elsevier ,1996
- Transcriptional regulation of the Icam-1 gene in antigen receptor- and phorbol ester-stimulated B lymphocytes: role for transcription factor EGR1.The Journal of Experimental Medicine, 1996
- Repression of the c-myb Gene by WT1 Protein in T and B Cell LinesJournal of Biological Chemistry, 1995
- A Regulatory Element in the Human Interleukin 2 Gene Promoter Is a Binding Site for the Zinc Finger Proteins Sp1 and EGR-1Published by Elsevier ,1995
- Astrocyte growth is regulated by neuropeptides through Tis 8 and basic fibroblast growth factor.Journal of Clinical Investigation, 1994
- Differentiation primary response genes and proto‐oncogenes as positive and negative regulators of terminal hematopoietic cell differentiationThe International Journal of Cell Cloning, 1994
- An S1 nuclease-sensitive homopurine/homopyrimidine domain in the PDGF A-chain promoter contains a novel binding site for the growth factor-inducible protein EGR-1Biochemical and Biophysical Research Communications, 1992
- Alteration of the Program of Terminal Differentiation Caused by Oncogenes in the Hemopoietic Progenitor Cell Line 32D C13 (G)Annals of the New York Academy of Sciences, 1989
- Regulation and role of different macrophage- and granulocyte-inducing proteins in normal and leukemic myeloid cellsInternational Journal of Cancer, 1982
- Biochemical transfer of single-copy eucaryotic genes using total cellular DNA as donorCell, 1978