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PMID: 9242526 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Inactivation of the Fanconi anemia group C gene augments interferon-gamma-induced apoptotic responses in hematopoietic cells.

Blood ·Vol. 90 ·No. 3 ·1997-08-01 ·Pages 974-85

Rathbun RK, Faulkner GR, Ostroski MH, Christianson TA, Hughes G, Jones G, Cahn R, Maziarz R, Royle G, Keeble W, Heinrich MC, Grompe M, Tower PA, Bagby GC

Abstract

Hematopoietic progenitor cells (HPC) from mice nullizygous at the Fanconi anemia (FA) group C locus (FAC -/-) are hypersensitive to the mitotic inhibitory effects of interferon (IFN-gamma). We tested the hypothesis that HPC from the bone marrow of Fanconi group C children are similarly hypersensitive and that the fas pathway is involved in affecting programmed cell death in response to low doses of IFN-gamma. In normal human and murine HPC, IFN-gamma primed the fas pathway and induced both fas and interferon response factor-1 (IRF-1) gene expression. These IFN-gamma-induced apoptotic responses in HPC from the marrow of a child with FA of the C group (FA-C) and in FAC -/- mice occurred at significantly lower IFN doses (by an order of magnitude) than did the apoptotic responses of normal HPC. Treatment of FA-C CD34+ cells with low doses of recombinant IFN-gamma, inhibited growth of colony forming unit granulocyte-macrophage and burst-forming unit erythroid, while treatment with blocking antibodies to fas augmented clonal growth and abrogated the clonal inhibitory effect of IFN-gamma. Transfer of the normal FAC gene into FA-C B-cell lines prevented mitomycin C-induced apoptosis, but did not suppress fas expression or inhibit the primed fas pathway. However, the kinetics of Stat1-phosphate decay in IFN-gamma-treated cells was prolonged in mutant cells and was normalized by transduction of the normal FAC gene. Therefore, the normal FAC protein serves, in part, to modulate IFN-gamma signals. HPC bearing inactivating mutations of FAC fail to normally modulate IFN-gamma signals and, as a result, undergo apoptosis executed through the fas pathway.

MeSH Terms
Anemia, Aplastic/etiology,physiopathology Animals Annexin A5/metabolism Apoptosis/drug effects,genetics Cell Cycle Proteins Cells, Cultured DNA, Complementary/genetics DNA-Binding Proteins/genetics,physiology Fanconi Anemia/complications,genetics,physiopathology Fanconi Anemia Complementation Group C Protein Fanconi Anemia Complementation Group Proteins Fas Ligand Protein Genetic Complementation Test Hematopoietic Stem Cells/drug effects Humans Interferon Regulatory Factor-1 Interferon-gamma/pharmacology Membrane Glycoproteins/genetics,physiology Mice Mice, Knockout Mitomycin/pharmacology Nuclear Proteins Phosphoproteins/genetics,physiology Proteins/genetics,physiology Recombinant Proteins Signal Transduction Transfection fas Receptor/genetics,physiology
Chemicals
Annexin A5 Cell Cycle Proteins DNA, Complementary DNA-Binding Proteins FANCC protein, human FASLG protein, human Fancc protein, mouse Fanconi Anemia Complementation Group C Protein Fanconi Anemia Complementation Group Proteins Fas Ligand Protein Fasl protein, mouse IRF1 protein, human Interferon Regulatory Factor-1 Irf1 protein, mouse Membrane Glycoproteins Nuclear Proteins Phosphoproteins Proteins Recombinant Proteins fas Receptor Mitomycin Interferon-gamma
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Rathbun R K
Division of Hematology and Medical Oncology, Oregon Health Sciences University, Portland 97201-3098, USA.
Faulkner G R
Ostroski M H
Christianson T A
Hughes G
Jones G
Cahn R
Maziarz R
Royle G
Keeble W
Heinrich M C
Grompe M
Tower P A
Bagby G C
Article Info
Journal
Blood
Abbr.
Blood
ISSN
0006-4971
Published
1997-08-01
Pages
974-85
Language
English
Region
United States
NLM ID
7603509
Subset
IM
Grants
NHLBI NIH HHS · HL48546 · United States
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