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PMID: 11919205 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.

Coupling endoplasmic reticulum stress to the cell death program. An Apaf-1-independent intrinsic pathway.

The Journal of biological chemistry ·Vol. 277 ·No. 24 ·2002-06-14 ·Pages 21836-42

Rao RV, Castro-Obregon S, Frankowski H, Schuler M, Stoka V, del Rio G, Bredesen DE, Ellerby HM

Abstract

Accumulation of misfolded proteins and alterations in Ca2+ homeostasis in the endoplasmic reticulum (ER) causes ER stress and leads to cell death. However, the signal-transducing events that connect ER stress to cell death pathways are incompletely understood. To discern the pathway by which ER stress-induced cell death proceeds, we performed studies on Apaf-1(-/-) (null) fibroblasts that are known to be relatively resistant to apoptotic insults that induce the intrinsic apoptotic pathway. While these cells were resistant to cell death initiated by proapoptotic stimuli such as tamoxifen, they were susceptible to apoptosis induced by thapsigargin and brefeldin-A, both of which induce ER stress. This pathway was inhibited by catalytic mutants of caspase-12 and caspase-9 and by a peptide inhibitor of caspase-9 but not by caspase-8 inhibitors. Cleavage of caspases and poly(ADP-ribose) polymerase was observed in cell-free extracts lacking cytochrome c that were isolated from thapsigargin or brefeldin-treated cells. To define the molecular requirements for this Apaf-1 and cytochrome c-independent apoptosis pathway further, we developed a cell-free system of ER stress-induced apoptosis; the addition of microsomes prepared from ER stress-induced cells to a normal cell extract lacking mitochondria or cytochrome c resulted in processing of caspases. Immunodepletion experiments suggested that caspase-12 was one of the microsomal components required to activate downstream caspases. Thus, ER stress-induced programmed cell death defines a novel, mitochondrial and Apaf-1-independent, intrinsic apoptotic pathway.

MeSH Terms
3T3 Cells Animals Anticarcinogenic Agents/pharmacology Apoptosis Apoptotic Protease-Activating Factor 1 Blotting, Western Brefeldin A/pharmacology Calcium/metabolism Carrier Proteins/biosynthesis Caspase 12 Caspase 9 Caspases/genetics,metabolism Cell Death Cell-Free System Cells, Cultured Endoplasmic Reticulum/metabolism,pathology Endoplasmic Reticulum Chaperone BiP Enzyme Inhibitors/pharmacology Heat-Shock Proteins Mice Molecular Chaperones/biosynthesis Mutation Plasmids/metabolism Poly Adenosine Diphosphate Ribose/metabolism Precipitin Tests Protein Binding Protein Biosynthesis Protein Structure, Tertiary Protein Synthesis Inhibitors/pharmacology Proteins/metabolism Subcellular Fractions Tamoxifen/pharmacology Thapsigargin/pharmacology Time Factors
Chemicals
Anticarcinogenic Agents Apaf1 protein, mouse Apoptotic Protease-Activating Factor 1 Carrier Proteins Endoplasmic Reticulum Chaperone BiP Enzyme Inhibitors Heat-Shock Proteins Molecular Chaperones Protein Synthesis Inhibitors Proteins Tamoxifen Brefeldin A Poly Adenosine Diphosphate Ribose Thapsigargin Casp12 protein, mouse Casp9 protein, mouse Caspase 12 Caspase 9 Caspases Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Rao Rammohan V
Buck Institute for Age Research, Novato, California 94945 and the Department of Medicine III, Johannes Gutenberg University, Mainz D-55101, Germany.
Castro-Obregon Susana
Frankowski Harald
Schuler Martin
Stoka Veronica
del Rio Gabriel
Bredesen Dale E
Ellerby H Michael
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-06-14
Epub
2002-00-27
Pages
21836-42
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIA NIH HHS · AG12282 · United States
NINDS NIH HHS · NS33376 · United States
NINDS NIH HHS · NS35155 · United States
NCI NIH HHS · R01 CA84262 · United States
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