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SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans

OBJECTIVE: The reversible attachment of small ubiquitin-like modifier (SUMO) proteins controls target localization and function. We examined an acute role for the SUMOylation pathway in downstream events mediating insulin secretion. RESEARCH DESIGN AND METHODS: We studied islets and β-cells from mic...

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Autores principales: Dai, Xiao-Qing, Plummer, Greg, Casimir, Marina, Kang, Youhou, Hajmrle, Catherine, Gaisano, Herbert Y., Manning Fox, Jocelyn E., MacDonald, Patrick E.
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3046844/
https://www.ncbi.nlm.nih.gov/pubmed/21266332
http://dx.doi.org/10.2337/db10-0440
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author Dai, Xiao-Qing
Plummer, Greg
Casimir, Marina
Kang, Youhou
Hajmrle, Catherine
Gaisano, Herbert Y.
Manning Fox, Jocelyn E.
MacDonald, Patrick E.
author_facet Dai, Xiao-Qing
Plummer, Greg
Casimir, Marina
Kang, Youhou
Hajmrle, Catherine
Gaisano, Herbert Y.
Manning Fox, Jocelyn E.
MacDonald, Patrick E.
author_sort Dai, Xiao-Qing
collection PubMed
description OBJECTIVE: The reversible attachment of small ubiquitin-like modifier (SUMO) proteins controls target localization and function. We examined an acute role for the SUMOylation pathway in downstream events mediating insulin secretion. RESEARCH DESIGN AND METHODS: We studied islets and β-cells from mice and human donors, as well as INS-1 832/13 cells. Insulin secretion, intracellular Ca(2+), and β-cell exocytosis were monitored after manipulation of the SUMOylation machinery. Granule localization was imaged by total internal reflection fluorescence and electron microscopy; immunoprecipitation and Western blotting were used to examine the soluble NSF attachment receptor (SNARE) complex formation and SUMO1 interaction with synaptotagmin VII. RESULTS: SUMO1 impairs glucose-stimulated insulin secretion by blunting the β-cell exocytotic response to Ca(2+). The effect of SUMO1 to impair insulin secretion and β-cell exocytosis is rapid and does not require altered gene expression or insulin content, is downstream of granule docking at the plasma membrane, and is dependent on SUMO-conjugation because the deSUMOylating enzyme, sentrin/SUMO-specific protease (SENP)-1, rescues exocytosis. SUMO1 coimmunoprecipitates with the Ca(2+) sensor synaptotagmin VII, and this is transiently lost upon glucose stimulation. SENP1 overexpression also disrupts the association of SUMO1 with synaptotagmin VII and mimics the effect of glucose to enhance exocytosis. Conversely, SENP1 knockdown impairs exocytosis at stimulatory glucose levels and blunts glucose-dependent insulin secretion from mouse and human islets. CONCLUSIONS: SUMOylation acutely regulates insulin secretion by the direct and reversible inhibition of β-cell exocytosis in response to intracellular Ca(2+) elevation. The SUMO protease, SENP1, is required for glucose-dependent insulin secretion.
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spelling pubmed-30468442012-03-01 SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans Dai, Xiao-Qing Plummer, Greg Casimir, Marina Kang, Youhou Hajmrle, Catherine Gaisano, Herbert Y. Manning Fox, Jocelyn E. MacDonald, Patrick E. Diabetes Islet Studies OBJECTIVE: The reversible attachment of small ubiquitin-like modifier (SUMO) proteins controls target localization and function. We examined an acute role for the SUMOylation pathway in downstream events mediating insulin secretion. RESEARCH DESIGN AND METHODS: We studied islets and β-cells from mice and human donors, as well as INS-1 832/13 cells. Insulin secretion, intracellular Ca(2+), and β-cell exocytosis were monitored after manipulation of the SUMOylation machinery. Granule localization was imaged by total internal reflection fluorescence and electron microscopy; immunoprecipitation and Western blotting were used to examine the soluble NSF attachment receptor (SNARE) complex formation and SUMO1 interaction with synaptotagmin VII. RESULTS: SUMO1 impairs glucose-stimulated insulin secretion by blunting the β-cell exocytotic response to Ca(2+). The effect of SUMO1 to impair insulin secretion and β-cell exocytosis is rapid and does not require altered gene expression or insulin content, is downstream of granule docking at the plasma membrane, and is dependent on SUMO-conjugation because the deSUMOylating enzyme, sentrin/SUMO-specific protease (SENP)-1, rescues exocytosis. SUMO1 coimmunoprecipitates with the Ca(2+) sensor synaptotagmin VII, and this is transiently lost upon glucose stimulation. SENP1 overexpression also disrupts the association of SUMO1 with synaptotagmin VII and mimics the effect of glucose to enhance exocytosis. Conversely, SENP1 knockdown impairs exocytosis at stimulatory glucose levels and blunts glucose-dependent insulin secretion from mouse and human islets. CONCLUSIONS: SUMOylation acutely regulates insulin secretion by the direct and reversible inhibition of β-cell exocytosis in response to intracellular Ca(2+) elevation. The SUMO protease, SENP1, is required for glucose-dependent insulin secretion. American Diabetes Association 2011-03 2011-02-21 /pmc/articles/PMC3046844/ /pubmed/21266332 http://dx.doi.org/10.2337/db10-0440 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
Dai, Xiao-Qing
Plummer, Greg
Casimir, Marina
Kang, Youhou
Hajmrle, Catherine
Gaisano, Herbert Y.
Manning Fox, Jocelyn E.
MacDonald, Patrick E.
SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title_full SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title_fullStr SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title_full_unstemmed SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title_short SUMOylation Regulates Insulin Exocytosis Downstream of Secretory Granule Docking in Rodents and Humans
title_sort sumoylation regulates insulin exocytosis downstream of secretory granule docking in rodents and humans
topic Islet Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3046844/
https://www.ncbi.nlm.nih.gov/pubmed/21266332
http://dx.doi.org/10.2337/db10-0440
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