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Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells

Synaptotagmin (Syt)-7, a major component of the exocytotic machinery in neurons, is also the major Syt in rodent pancreatic β-cells shown to mediate glucose-stimulated insulin secretion (GSIS). However, Syt-7’s precise exocytotic actions in β-cells remain unknown. We show that Syt-7 is abundant in h...

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Detalles Bibliográficos
Autores principales: Dolai, Subhankar, Xie, Li, Zhu, Dan, Liang, Tao, Qin, Tairan, Xie, Huanli, Kang, Youhou, Chapman, Edwin R., Gaisano, Herbert Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384637/
https://www.ncbi.nlm.nih.gov/pubmed/27207520
http://dx.doi.org/10.2337/db15-1436
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author Dolai, Subhankar
Xie, Li
Zhu, Dan
Liang, Tao
Qin, Tairan
Xie, Huanli
Kang, Youhou
Chapman, Edwin R.
Gaisano, Herbert Y.
author_facet Dolai, Subhankar
Xie, Li
Zhu, Dan
Liang, Tao
Qin, Tairan
Xie, Huanli
Kang, Youhou
Chapman, Edwin R.
Gaisano, Herbert Y.
author_sort Dolai, Subhankar
collection PubMed
description Synaptotagmin (Syt)-7, a major component of the exocytotic machinery in neurons, is also the major Syt in rodent pancreatic β-cells shown to mediate glucose-stimulated insulin secretion (GSIS). However, Syt-7’s precise exocytotic actions in β-cells remain unknown. We show that Syt-7 is abundant in human β-cells. Adenovirus–short hairpin RNA knockdown (KD) of Syt-7 in human islets reduced first- and second-phase GSIS attributed to the reduction of exocytosis of predocked and newcomer insulin secretory granules (SGs). Glucose stimulation expectedly induced Syt-7 association in a Ca(2+)-dependent manner with syntaxin-3 and syntaxin-1A soluble N-ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complexes known to mediate exocytosis of newcomer and predocked SGs, respectively. However, Syt-7-KD did not disrupt SNARE complex assembly. Instead, electron microscopy analysis showed that Syt-7-KD reduced the recruitment of SGs to the plasma membrane after glucose-stimulated depletion, which could not be rescued by glucagon-like peptide 1 pretreatment. To assess the possibility that this new action of Syt-7 on SG recruitment may involve calmodulin (CaM), pretreatment of islets with CaM blocker calmidazolium showed effects very similar to those of Syt-7-KD. Syt-7 therefore plays a novel more dominant function in the replenishment of releasable SG pools in human β-cells than its previously purported role in exocytotic fusion per se.
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spelling pubmed-53846372017-07-01 Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells Dolai, Subhankar Xie, Li Zhu, Dan Liang, Tao Qin, Tairan Xie, Huanli Kang, Youhou Chapman, Edwin R. Gaisano, Herbert Y. Diabetes Islet Studies Synaptotagmin (Syt)-7, a major component of the exocytotic machinery in neurons, is also the major Syt in rodent pancreatic β-cells shown to mediate glucose-stimulated insulin secretion (GSIS). However, Syt-7’s precise exocytotic actions in β-cells remain unknown. We show that Syt-7 is abundant in human β-cells. Adenovirus–short hairpin RNA knockdown (KD) of Syt-7 in human islets reduced first- and second-phase GSIS attributed to the reduction of exocytosis of predocked and newcomer insulin secretory granules (SGs). Glucose stimulation expectedly induced Syt-7 association in a Ca(2+)-dependent manner with syntaxin-3 and syntaxin-1A soluble N-ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complexes known to mediate exocytosis of newcomer and predocked SGs, respectively. However, Syt-7-KD did not disrupt SNARE complex assembly. Instead, electron microscopy analysis showed that Syt-7-KD reduced the recruitment of SGs to the plasma membrane after glucose-stimulated depletion, which could not be rescued by glucagon-like peptide 1 pretreatment. To assess the possibility that this new action of Syt-7 on SG recruitment may involve calmodulin (CaM), pretreatment of islets with CaM blocker calmidazolium showed effects very similar to those of Syt-7-KD. Syt-7 therefore plays a novel more dominant function in the replenishment of releasable SG pools in human β-cells than its previously purported role in exocytotic fusion per se. American Diabetes Association 2016-07 2016-04-26 /pmc/articles/PMC5384637/ /pubmed/27207520 http://dx.doi.org/10.2337/db15-1436 Text en © 2016 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.
spellingShingle Islet Studies
Dolai, Subhankar
Xie, Li
Zhu, Dan
Liang, Tao
Qin, Tairan
Xie, Huanli
Kang, Youhou
Chapman, Edwin R.
Gaisano, Herbert Y.
Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title_full Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title_fullStr Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title_full_unstemmed Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title_short Synaptotagmin-7 Functions to Replenish Insulin Granules for Exocytosis in Human Islet β-Cells
title_sort synaptotagmin-7 functions to replenish insulin granules for exocytosis in human islet β-cells
topic Islet Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384637/
https://www.ncbi.nlm.nih.gov/pubmed/27207520
http://dx.doi.org/10.2337/db15-1436
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