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-List Of Titles -Induction of the unfolded protein response in familial amyotrophic lateral sclerosis and association of protein-disulfide isomerase with superoxide dismutase 1

Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/15851

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Title
Induction of the unfolded protein response in familial amyotrophic lateral sclerosis and association of protein-disulfide isomerase with superoxide dismutase 1
Related
Journal of biological chemistry, Vol. 281, Issue 40, p.30152-30165
DOI
10.1074/jbc.M603393200
Publisher
The American Society for Biochemistry and Molecular Biology
Date
2006
Author/Creator
Atkin, Julie D
Author/Creator
Farg, Manal A
Author/Creator
Horne, Malcolm K
Author/Creator
Turner, Bradley J
Author/Creator
Tomas, Doris
Author/Creator
Lysaght, Judith A
Author/Creator
Nunan, Janelle
Author/Creator
Rembach, Alan
Author/Creator
Nagley, Phillip
Author/Creator
Beart, Philip M
Author/Creator
Cheema, Surindar S
Description
Mutations in Cu/Zn superoxide dismutase (SOD1) are linked to motor neuron death in familial amyotrophic lateral sclerosis (ALS) by an unclear mechanism, although misfolded SOD1 aggregates are commonly associated with disease. Proteomic analysis of the transgenic SOD1[G93A] ALS rat model revealed significant up-regulation of endoplasmic reticulum (ER)-resident protein-disulfide isomerase (PDI) family members in lumbar spinal cords. Expression of SOD1 mutants (mSOD1) led to an up-regulation of PDI in motor neuron-like NSC-34 cells but not other cell lines. Inhibition of PDI using bacitracin increased aggregate production, even in wild type SOD1 transfectants that do not readily form inclusions, suggesting PDI may protect SOD1 from aggregation. Moreover, PDI co-localized with intracellular aggregates of mSOD1 and bound to both wild type and mSOD1. SOD1 was also found in the microsomal fraction of cells despite being a predominantly cytosolic enzyme, confirming ER-Golgi-dependent secretion. In SOD1[G93A] mice, a significant up-regulation of unfolded protein response entities was also observed during disease, including caspase-12, -9, and -3 cleavage. Our findings therefore implicate unfolded protein response and ER stress-induced apoptosis in the patho-physiology of familial ALS. The possibility that PDI may be a therapeutic target to prevent SOD1 aggregation is also raised by this study.
Description
14 page(s)
Resource Type
journal article
Organisation
Macquarie University. Australian Proteome Analysis Facility (APAF)

Identifier
http://hdl.handle.net/1959.14/15851
Identifier
ISSN:1083-351X
Identifier
mq-rm-2006004979
Language
eng
Reviewed
Reviewed
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Citation Format
E-mail Address
Subject
"Journal of biological chemistry"
 
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