The novel primary response gene MyD118 and the proto-oncogenes myb, myc, and bcl-2 modulate transforming growth factor beta 1-induced apoptosis of myeloid leukemia cells.
0301 basic medicine
Leukemia, Experimental
Genes, myc
Genetic Variation
Proteins
Apoptosis
Protein-Tyrosine Kinases
Antigens, Differentiation
Polymerase Chain Reaction
Cell Line
Clone Cells
3. Good health
Gene Expression Regulation, Neoplastic
Kinetics
Mice
Proto-Oncogene Proteins c-myb
03 medical and health sciences
Proto-Oncogene Proteins c-bcl-2
Leukemia, Myeloid
Proto-Oncogene Proteins
Proto-Oncogenes
Animals
Cell Division
DOI:
10.1128/mcb.14.4.2352
Publication Date:
2012-01-24T08:30:00Z
AUTHORS (6)
ABSTRACT
Cell numbers are regulated by a balance among proliferation, growth arrest, and programmed cell death. A profound example of cell homeostasis, controlled throughout life, is the complex process of blood cell development, yet little is understood about the intracellular mechanisms that regulate blood cell growth arrest and programmed cell death. In this work, using transforming growth factor beta 1 (TGF beta 1)-treated M1 myeloid leukemia cells and genetically engineered M1 cell variants, the regulation of growth arrest and apoptosis was dissected. Blocking of early expression of MyD118, a novel differentiation primary response gene also shown to be a primary response gene induced by TGF beta 1, delayed TGF beta 1-induced apoptosis, demonstrating that MyD118 is a positive modulator of TGF beta 1-mediated cell death. Elevated expression of bcl-2 blocked the TGF beta 1-induced apoptotic pathway but not growth arrest induced by TGF beta 1. Deregulated expression of either c-myc or c-myb inhibited growth arrest and accelerated apoptosis, demonstrating for the first time that c-myb plays a role in regulating apoptosis. In all cases, the apoptotic response was correlated with the level of MyD118 expression. Taken together, these findings demonstrate that the primary response gene MyD118 and the c-myc, c-myb, and bcl-2 proto-oncogenes interact to modulate growth arrest and apoptosis of myeloid cells.
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