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STAT1 is a master regulator of pancreatic {beta}-cell apoptosis and islet inflammation

Authors :
Najib Naamane
Thomas Thykjaer
Esteban Nicolas Gurzov
Torben F. Ørntoft
Chantal Mathieu
Mariana Igoillo-Esteve
Fernanda Ortis
Fabrice Moore
Decio L. Eizirik
Thomas Bouckenooghe
Gianluca Bontempi
Maikel Luis Colli
Source :
Journal of Biological Chemistry; Vol 286, Moore, F, Naamane, N, Colli, M L, Bouckenooghe, T, Ortis, F, Gurzov, E N, Igoillo-Esteve, M, Mathieu, C, Bontempi, G, Thykjaer, T, Ørntoft, T F & Eizirik, D L 2011, ' STAT1 is a master regulator of pancreatic {beta}-cell apoptosis and islet inflammation ', Journal of Biological Chemistry, vol. 286, no. 2, pp. 929-41 . https://doi.org/10.1074/jbc.M110.162131
Publication Year :
2010

Abstract

Cytokines produced by islet-infiltrating immune cells induce β-cell apoptosis in type 1 diabetes. The IFN-γ-regulated transcription factors STAT1/IRF-1 have apparently divergent effects on β-cells. Thus, STAT1 promotes apoptosis and inflammation, whereas IRF-1 down-regulates inflammatory mediators. To understand the molecular basis for these differential outcomes within a single signal transduction pathway, we presently characterized the gene networks regulated by STAT1 and IRF-1 in β-cells. This was done by using siRNA approaches coupled to microarray analysis of insulin-producing cells exposed or not to IL-1β and IFN-γ. Relevant microarray findings were further studied in INS-1E cells and primary rat β-cells. STAT1, but not IRF-1, mediates the cytokine-induced loss of the differentiated β-cell phenotype, as indicated by decreased insulin, Pdx1, MafA, and Glut2. Furthermore, STAT1 regulates cytokine-induced apoptosis via up-regulation of the proapoptotic protein DP5. STAT1 and IRF-1 have opposite effects on cytokine-induced chemokine production, with IRF-1 exerting negative feedback inhibition on STAT1 and downstream chemokine expression. The present study elucidates the transcriptional networks through which the IFN-γ/STAT1/IRF-1 axis controls β-cell function/differentiation, demise, and islet inflammation.

Details

ISSN :
1083351X
Volume :
286
Issue :
2
Database :
OpenAIRE
Journal :
The Journal of biological chemistry
Accession number :
edsair.doi.dedup.....5fb604ff094464aae734804a0ce01b65
Full Text :
https://doi.org/10.1074/jbc.M110.162131