Heat shock protein 70 suppresses astroglial-inducible nitric-oxide synthase expression by decreasing NFκΒ activation Journal Article


Authors: Feinstein, D. L.; Galea, E.; Aquino, D. A.; Li, G. C.; Xu, H.; Reis, D. J.
Article Title: Heat shock protein 70 suppresses astroglial-inducible nitric-oxide synthase expression by decreasing NFκΒ activation
Abstract: In brain glial cells, expression of calcium independent nitric oxide synthase (NOS-2) is induced following stimulation with bacterial endotoxin (lipopolysaccharide (LPS)) and/or pro-inflammatory cytokines. We have investigated the effects of heat shock (HS), which can re duce inflammatory responses in several cell types, on the induction of glial NOS-2 expression. Preincubation of cells for 20-60 min at 43 degrees C decreased subsequent levels of NOS-2 induction, with a maximal 80% reduction after 60 min of HS. Following HS, cells were refractory to NOS inducers for up to 4 h, after which time little or no suppression was observed. HS reduced cytosolic NOS-2 enzymatic activity (3-fold), steady state mRNA levels (2-3-fold), and gene promoter activity (by 50%). HS also reduced LPS induced nuclear accumulation of transcription factor NF kappa B p65 subunit, suggesting perturbation of NF kappa B activation. A role for HS protein (HSP) 70 in NOS-2 suppression by HS is supported by the demonstration that 1) transfection with human HSP70 cDNA partially replicated HS effects; 2) antisense, but not sense, oligonucleotides directed against rat HSP70 partially blocked HS effects; and 3) rat fibroblasts stably expressing human HSP70 did not express NOS-2 in response to LPS plus cytokines. As with heat-shocked cells, HSP70 expressing cells also exhibited decreased NF kappa B p65 subunit nuclear accumulation. These results demonstrate that in glial cells, as well as other cell types, NOS-2 induction can be modulated by the HS response, mediated at least in part by HSP70 expression.
Keywords: gene; glucocorticoid; receptor; interferon-gamma; hsp70; astrocytes; induction; mammalian-cells; glioma-cells; cns glial-cells; stress proteins
Journal Title: Journal of Biological Chemistry
Volume: 271
Issue: 30
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 1996-07-26
Start Page: 17724
End Page: 17732
Language: English
ACCESSION: WOS:A1996UY93500023
DOI: 10.1074/jbc.271.30.17724
PROVIDER: wos
PUBMED: 8663604
Notes: Article -- Source: Wos
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  1. Gloria C Li
    132 Li