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Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets
Mutations in the uncoupling protein 2 (Ucp2) gene are linked to type-2 diabetes. Here, a potential mechanism by which lack of UCP2 is cytoprotective in pancreatic β-cells was investigated. Nitric oxide (NO) production was elevated in Ucp2(−/−) islets. Proliferation (cyclin D2, Ccnd2) and anti-apopto...
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Formato: | Texto |
Lenguaje: | English |
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Society for Endocrinology
2011
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3077812/ https://www.ncbi.nlm.nih.gov/pubmed/21321094 http://dx.doi.org/10.1530/JME-10-0117 |
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author | Niño Fong, Rodolfo Fatehi-Hassanabad, Zahra Lee, Simon C Lu, Hongfang Wheeler, Michael B Chan, Catherine B |
author_facet | Niño Fong, Rodolfo Fatehi-Hassanabad, Zahra Lee, Simon C Lu, Hongfang Wheeler, Michael B Chan, Catherine B |
author_sort | Niño Fong, Rodolfo |
collection | PubMed |
description | Mutations in the uncoupling protein 2 (Ucp2) gene are linked to type-2 diabetes. Here, a potential mechanism by which lack of UCP2 is cytoprotective in pancreatic β-cells was investigated. Nitric oxide (NO) production was elevated in Ucp2(−/−) islets. Proliferation (cyclin D2, Ccnd2) and anti-apoptosis (Tnfaip3) genes had increased expression in Ucp2(−/−) islets, whereas the mRNA of pro-apoptosis genes (Jun, Myc) was reduced. TNFAIP3 cellular localization was detected in both α- and β-cells of Ucp2(−/−) islets but in neither α- nor β-cells of UCP2(+)(/)(+) islets, where it was detected in pancreatic polypeptide-expressing cells. TNFAIP3 distribution was not markedly altered 14 days after streptozotocin treatment. Basal apoptosis was attenuated in Ucp2(−/−) β-cells, while the nuclear factor κB (NF-κB) pathway was transactivated after islet isolation. Ucp2(+/+) and Ucp2(−/−) islets were treated with cytokines for 24 h. Cytokines did not increase NF-κB transactivation or apoptosis in Ucp2(−/−) islets and TNFAIP3 was more strongly induced in Ucp2(−/−) islets. Inhibition of NO production strongly reduced NF-κB activation and apoptosis. These data show that null expression of Ucp2 induces transactivation of NF-κB in isolated islets, possibly due to NO-dependent up-regulation of inhibitor of κB kinase β activity. NF-κB transactivation appears to result in altered expression of genes that enhance a pro-survival phenotype basally and when β-cells are exposed to cytokines. TNFAIP3 is of particular interest because of its ability to regulate NF-κB signaling pathways. |
format | Text |
id | pubmed-3077812 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Society for Endocrinology |
record_format | MEDLINE/PubMed |
spelling | pubmed-30778122011-06-01 Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets Niño Fong, Rodolfo Fatehi-Hassanabad, Zahra Lee, Simon C Lu, Hongfang Wheeler, Michael B Chan, Catherine B J Mol Endocrinol Regular Papers Mutations in the uncoupling protein 2 (Ucp2) gene are linked to type-2 diabetes. Here, a potential mechanism by which lack of UCP2 is cytoprotective in pancreatic β-cells was investigated. Nitric oxide (NO) production was elevated in Ucp2(−/−) islets. Proliferation (cyclin D2, Ccnd2) and anti-apoptosis (Tnfaip3) genes had increased expression in Ucp2(−/−) islets, whereas the mRNA of pro-apoptosis genes (Jun, Myc) was reduced. TNFAIP3 cellular localization was detected in both α- and β-cells of Ucp2(−/−) islets but in neither α- nor β-cells of UCP2(+)(/)(+) islets, where it was detected in pancreatic polypeptide-expressing cells. TNFAIP3 distribution was not markedly altered 14 days after streptozotocin treatment. Basal apoptosis was attenuated in Ucp2(−/−) β-cells, while the nuclear factor κB (NF-κB) pathway was transactivated after islet isolation. Ucp2(+/+) and Ucp2(−/−) islets were treated with cytokines for 24 h. Cytokines did not increase NF-κB transactivation or apoptosis in Ucp2(−/−) islets and TNFAIP3 was more strongly induced in Ucp2(−/−) islets. Inhibition of NO production strongly reduced NF-κB activation and apoptosis. These data show that null expression of Ucp2 induces transactivation of NF-κB in isolated islets, possibly due to NO-dependent up-regulation of inhibitor of κB kinase β activity. NF-κB transactivation appears to result in altered expression of genes that enhance a pro-survival phenotype basally and when β-cells are exposed to cytokines. TNFAIP3 is of particular interest because of its ability to regulate NF-κB signaling pathways. Society for Endocrinology 2011-06 /pmc/articles/PMC3077812/ /pubmed/21321094 http://dx.doi.org/10.1530/JME-10-0117 Text en © 2011 Society for Endocrinology http://www.endocrinology.org/journals/reuselicence/ This is an Open Access article distributed under the terms of the Society for Endocrinology's Re-use Licence (http://www.endocrinology.org/journals/reuselicence/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Regular Papers Niño Fong, Rodolfo Fatehi-Hassanabad, Zahra Lee, Simon C Lu, Hongfang Wheeler, Michael B Chan, Catherine B Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title | Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title_full | Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title_fullStr | Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title_full_unstemmed | Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title_short | Uncoupling protein-2 increases nitric oxide production and TNFAIP3 pathway activation in pancreatic islets |
title_sort | uncoupling protein-2 increases nitric oxide production and tnfaip3 pathway activation in pancreatic islets |
topic | Regular Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3077812/ https://www.ncbi.nlm.nih.gov/pubmed/21321094 http://dx.doi.org/10.1530/JME-10-0117 |
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