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PMID: 10862756 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

FADD is required for DR4- and DR5-mediated apoptosis: lack of trail-induced apoptosis in FADD-deficient mouse embryonic fibroblasts.

The Journal of biological chemistry ·Vol. 275 ·No. 33 ·2000-08-18 ·Pages 25065-8

Kuang AA, Diehl GE, Zhang J, Winoto A

Abstract

TRAIL (tumor necrosis factor-related apoptosis-inducing ligand) is a member of the tumor necrosis factor family that can kill a wide variety of tumor cells but not normal cells. TRAIL-induced apoptosis in humans is mediated by its receptors DR4 (TRAIL-R1) and DR5 (TRAIL-R2). What constitutes the signaling molecules downstream of these receptors, however, remains highly controversial. Using the FADD dominant negative molecule, several groups have reached different conclusions with respect to the role of FADD in TRAIL-induced apoptosis. More recently, using FADD-deficient (-/-) mouse embryonic fibroblasts, Yeh et al. (Yeh, W.-C., Pompa, J. L., McCurrach, M. E., Shu, H.-B., Elia, A. J., Shahinian, A., Ng, M., Wakeham, A., Khoo, W., Mitchell, K., El-Deiry, W. S., Lowe, S. W., Goeddel, D. V., and Mak, T. W. (1998) Science 279, 1954-1958) concluded that DR4 utilizes a FADD-independent apoptotic pathway. The latter experiment, however, involved transient overexpression, which often leads to nonspecific aggregation of death domain-containing receptors. To address this issue in a more physiological setting, we stably transfected mouse DR4/5, human DR4, or human DR5 into FADD(-/-) mouse embryonic fibroblast cells. We showed that FADD(-/-) MEF cells stably transfected with TRAIL receptors are resistant to TRAIL-mediated cell death. In contrast, TRAIL receptors stably transfected into heterozygous FADD(+/-) cells or FADD(-/-) cells reconstituted with a FADD retroviral construct are sensitive to the TRAIL cytotoxic effect. We conclude that FADD is required for DR4- and DR5-mediated apoptosis.

MeSH Terms
Adaptor Proteins, Signal Transducing Animals Annexin A5/metabolism Apoptosis Apoptosis Regulatory Proteins Blotting, Western Carrier Proteins/physiology Cell Survival/drug effects Cells, Cultured Cloning, Molecular Dose-Response Relationship, Drug Expressed Sequence Tags Fas-Associated Death Domain Protein Fibroblasts/metabolism Flow Cytometry Humans Membrane Glycoproteins/pharmacology Mice Polymerase Chain Reaction Receptors, TNF-Related Apoptosis-Inducing Ligand Receptors, Tumor Necrosis Factor/metabolism Recombinant Proteins/pharmacology Signal Transduction TNF-Related Apoptosis-Inducing Ligand Transfection Tumor Necrosis Factor-alpha/pharmacology
Chemicals
Adaptor Proteins, Signal Transducing Annexin A5 Apoptosis Regulatory Proteins Carrier Proteins FADD protein, human Fadd protein, mouse Fas-Associated Death Domain Protein Membrane Glycoproteins Receptors, TNF-Related Apoptosis-Inducing Ligand Receptors, Tumor Necrosis Factor Recombinant Proteins TNF-Related Apoptosis-Inducing Ligand TNFRSF10A protein, human TNFRSF10B protein, human TNFSF10 protein, human Tnfrsf10b protein, mouse Tnfsf10 protein, mouse Tumor Necrosis Factor-alpha
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Kuang A A
Department of Molecular and Cell Biology, Cancer Research Laboratory and Division of Immunology, University of California, Berkeley 94720-3200, USA.
Diehl G E
Zhang J
Winoto A
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2000-08-18
Pages
25065-8
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NCI NIH HHS · CA75162 · United States
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