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Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes

OBJECTIVE: To determine the role of hepatocyte growth factor (HGF)/c-Met on β-cell survival in diabetogenic conditions in vivo and in response to cytokines in vitro. RESEARCH DESIGN AND METHODS: We generated pancreas-specific c-Met-null (PancMet KO) mice and characterized their response to diabetes...

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Autores principales: Mellado-Gil, Jose, Rosa, Taylor C., Demirci, Cem, Gonzalez-Pertusa, Jose A., Velazquez-Garcia, Silvia, Ernst, Sara, Valle, Shelley, Vasavada, Rupangi C., Stewart, Andrew F., Alonso, Laura C., Garcia-Ocaña, Adolfo
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3028352/
https://www.ncbi.nlm.nih.gov/pubmed/20980460
http://dx.doi.org/10.2337/db09-1305
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author Mellado-Gil, Jose
Rosa, Taylor C.
Demirci, Cem
Gonzalez-Pertusa, Jose A.
Velazquez-Garcia, Silvia
Ernst, Sara
Valle, Shelley
Vasavada, Rupangi C.
Stewart, Andrew F.
Alonso, Laura C.
Garcia-Ocaña, Adolfo
author_facet Mellado-Gil, Jose
Rosa, Taylor C.
Demirci, Cem
Gonzalez-Pertusa, Jose A.
Velazquez-Garcia, Silvia
Ernst, Sara
Valle, Shelley
Vasavada, Rupangi C.
Stewart, Andrew F.
Alonso, Laura C.
Garcia-Ocaña, Adolfo
author_sort Mellado-Gil, Jose
collection PubMed
description OBJECTIVE: To determine the role of hepatocyte growth factor (HGF)/c-Met on β-cell survival in diabetogenic conditions in vivo and in response to cytokines in vitro. RESEARCH DESIGN AND METHODS: We generated pancreas-specific c-Met-null (PancMet KO) mice and characterized their response to diabetes induced by multiple low-dose streptozotocin (MLDS) administration. We also analyzed the effect of HGF/c-Met signaling in vitro on cytokine-induced β-cell death in mouse and human islets, specifically examining the role of nuclear factor (NF)-κB. RESULTS: Islets exposed in vitro to cytokines or from MLDS-treated mice displayed significantly increased HGF and c-Met levels, suggesting a potential role for HGF/c-Met in β-cell survival against diabetogenic agents. Adult PancMet KO mice displayed normal glucose and β-cell homeostasis, indicating that pancreatic c-Met loss is not detrimental for β-cell growth and function under basal conditions. However, PancMet KO mice were more susceptible to MLDS-induced diabetes. They displayed higher blood glucose levels, marked hypoinsulinemia, and reduced β-cell mass compared with wild-type littermates. PancMet KO mice showed enhanced intraislet infiltration, islet nitric oxide (NO) and chemokine production, and β-cell apoptosis. c-Met-null β-cells were more sensitive to cytokine-induced cell death in vitro, an effect mediated by NF-κB activation and NO production. Conversely, HGF treatment decreased p65/NF-κB activation and fully protected mouse and, more important, human β-cells against cytokines. CONCLUSIONS: These results show that HGF/c-Met is critical for β-cell survival by attenuating NF-κB signaling and suggest that activation of the HGF/c-Met signaling pathway represents a novel strategy for enhancing β-cell protection.
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spelling pubmed-30283522012-02-01 Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes Mellado-Gil, Jose Rosa, Taylor C. Demirci, Cem Gonzalez-Pertusa, Jose A. Velazquez-Garcia, Silvia Ernst, Sara Valle, Shelley Vasavada, Rupangi C. Stewart, Andrew F. Alonso, Laura C. Garcia-Ocaña, Adolfo Diabetes Islet Studies OBJECTIVE: To determine the role of hepatocyte growth factor (HGF)/c-Met on β-cell survival in diabetogenic conditions in vivo and in response to cytokines in vitro. RESEARCH DESIGN AND METHODS: We generated pancreas-specific c-Met-null (PancMet KO) mice and characterized their response to diabetes induced by multiple low-dose streptozotocin (MLDS) administration. We also analyzed the effect of HGF/c-Met signaling in vitro on cytokine-induced β-cell death in mouse and human islets, specifically examining the role of nuclear factor (NF)-κB. RESULTS: Islets exposed in vitro to cytokines or from MLDS-treated mice displayed significantly increased HGF and c-Met levels, suggesting a potential role for HGF/c-Met in β-cell survival against diabetogenic agents. Adult PancMet KO mice displayed normal glucose and β-cell homeostasis, indicating that pancreatic c-Met loss is not detrimental for β-cell growth and function under basal conditions. However, PancMet KO mice were more susceptible to MLDS-induced diabetes. They displayed higher blood glucose levels, marked hypoinsulinemia, and reduced β-cell mass compared with wild-type littermates. PancMet KO mice showed enhanced intraislet infiltration, islet nitric oxide (NO) and chemokine production, and β-cell apoptosis. c-Met-null β-cells were more sensitive to cytokine-induced cell death in vitro, an effect mediated by NF-κB activation and NO production. Conversely, HGF treatment decreased p65/NF-κB activation and fully protected mouse and, more important, human β-cells against cytokines. CONCLUSIONS: These results show that HGF/c-Met is critical for β-cell survival by attenuating NF-κB signaling and suggest that activation of the HGF/c-Met signaling pathway represents a novel strategy for enhancing β-cell protection. American Diabetes Association 2011-02 2011-01-21 /pmc/articles/PMC3028352/ /pubmed/20980460 http://dx.doi.org/10.2337/db09-1305 Text en © 2011 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Islet Studies
Mellado-Gil, Jose
Rosa, Taylor C.
Demirci, Cem
Gonzalez-Pertusa, Jose A.
Velazquez-Garcia, Silvia
Ernst, Sara
Valle, Shelley
Vasavada, Rupangi C.
Stewart, Andrew F.
Alonso, Laura C.
Garcia-Ocaña, Adolfo
Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title_full Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title_fullStr Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title_full_unstemmed Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title_short Disruption of Hepatocyte Growth Factor/c-Met Signaling Enhances Pancreatic β-Cell Death and Accelerates the Onset of Diabetes
title_sort disruption of hepatocyte growth factor/c-met signaling enhances pancreatic β-cell death and accelerates the onset of diabetes
topic Islet Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3028352/
https://www.ncbi.nlm.nih.gov/pubmed/20980460
http://dx.doi.org/10.2337/db09-1305
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