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Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells

Syntaxin (Syn)-1A mediates exocytosis of predocked insulin-containing secretory granules (SGs) during first-phase glucose-stimulated insulin secretion (GSIS) in part via its interaction with plasma membrane (PM)-bound L-type voltage-gated calcium channels (Ca(v)). In contrast, Syn-3 mediates exocyto...

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Autores principales: Xie, Li, Dolai, Subhankar, Kang, Youhou, Liang, Tao, Xie, Huanli, Qin, Tairan, Yang, Lu, Chen, Liangyi, Gaisano, Herbert Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743851/
https://www.ncbi.nlm.nih.gov/pubmed/26848587
http://dx.doi.org/10.1371/journal.pone.0147862
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author Xie, Li
Dolai, Subhankar
Kang, Youhou
Liang, Tao
Xie, Huanli
Qin, Tairan
Yang, Lu
Chen, Liangyi
Gaisano, Herbert Y.
author_facet Xie, Li
Dolai, Subhankar
Kang, Youhou
Liang, Tao
Xie, Huanli
Qin, Tairan
Yang, Lu
Chen, Liangyi
Gaisano, Herbert Y.
author_sort Xie, Li
collection PubMed
description Syntaxin (Syn)-1A mediates exocytosis of predocked insulin-containing secretory granules (SGs) during first-phase glucose-stimulated insulin secretion (GSIS) in part via its interaction with plasma membrane (PM)-bound L-type voltage-gated calcium channels (Ca(v)). In contrast, Syn-3 mediates exocytosis of newcomer SGs that accounts for second-phase GSIS. We now hypothesize that the newcomer SG Syn-3 preferentially binds and modulates R-type Ca(v) opening, which was postulated to mediate second-phase GSIS. Indeed, glucose-stimulation of pancreatic islet β-cell line INS-1 induced a predominant increase in interaction between Syn-3 and Ca(v)α1 pore-forming subunits of R-type Ca(v)2.3 and to lesser extent L-type Ca(v)s, while confirming the preferential interactions between Syn-1A with L-type (Ca(v)1.2, Ca(v)1.3) Ca(v)s. Consistently, direct binding studies employing heterologous HEK cells confirmed that Syn-3 preferentially binds Ca(v)2.3, whereas Syn-1A prefers L-type Ca(v)s. We then used siRNA knockdown (KD) of Syn-3 in INS-1 to study the endogenous modulatory actions of Syn-3 on Ca(v) channels. Syn-3 KD enhanced Ca(2+) currents by 46% attributed mostly to R- and L-type Ca(v)s. Interestingly, while the transmembrane domain of Syn-1A is the putative functional domain modulating Ca(v) activity, it is the cytoplasmic domain of Syn-3 that appears to modulate Ca(v) activity. We conclude that Syn-3 may mimic Syn-1A in the ability to bind and modulate Ca(v)s, but preferring Ca(v)2.3 to perhaps participate in triggering fusion of newcomer insulin SGs during second-phase GSIS.
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spelling pubmed-47438512016-02-11 Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells Xie, Li Dolai, Subhankar Kang, Youhou Liang, Tao Xie, Huanli Qin, Tairan Yang, Lu Chen, Liangyi Gaisano, Herbert Y. PLoS One Research Article Syntaxin (Syn)-1A mediates exocytosis of predocked insulin-containing secretory granules (SGs) during first-phase glucose-stimulated insulin secretion (GSIS) in part via its interaction with plasma membrane (PM)-bound L-type voltage-gated calcium channels (Ca(v)). In contrast, Syn-3 mediates exocytosis of newcomer SGs that accounts for second-phase GSIS. We now hypothesize that the newcomer SG Syn-3 preferentially binds and modulates R-type Ca(v) opening, which was postulated to mediate second-phase GSIS. Indeed, glucose-stimulation of pancreatic islet β-cell line INS-1 induced a predominant increase in interaction between Syn-3 and Ca(v)α1 pore-forming subunits of R-type Ca(v)2.3 and to lesser extent L-type Ca(v)s, while confirming the preferential interactions between Syn-1A with L-type (Ca(v)1.2, Ca(v)1.3) Ca(v)s. Consistently, direct binding studies employing heterologous HEK cells confirmed that Syn-3 preferentially binds Ca(v)2.3, whereas Syn-1A prefers L-type Ca(v)s. We then used siRNA knockdown (KD) of Syn-3 in INS-1 to study the endogenous modulatory actions of Syn-3 on Ca(v) channels. Syn-3 KD enhanced Ca(2+) currents by 46% attributed mostly to R- and L-type Ca(v)s. Interestingly, while the transmembrane domain of Syn-1A is the putative functional domain modulating Ca(v) activity, it is the cytoplasmic domain of Syn-3 that appears to modulate Ca(v) activity. We conclude that Syn-3 may mimic Syn-1A in the ability to bind and modulate Ca(v)s, but preferring Ca(v)2.3 to perhaps participate in triggering fusion of newcomer insulin SGs during second-phase GSIS. Public Library of Science 2016-02-05 /pmc/articles/PMC4743851/ /pubmed/26848587 http://dx.doi.org/10.1371/journal.pone.0147862 Text en © 2016 Xie et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Xie, Li
Dolai, Subhankar
Kang, Youhou
Liang, Tao
Xie, Huanli
Qin, Tairan
Yang, Lu
Chen, Liangyi
Gaisano, Herbert Y.
Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title_full Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title_fullStr Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title_full_unstemmed Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title_short Syntaxin-3 Binds and Regulates Both R- and L-Type Calcium Channels in Insulin-Secreting INS-1 832/13 Cells
title_sort syntaxin-3 binds and regulates both r- and l-type calcium channels in insulin-secreting ins-1 832/13 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4743851/
https://www.ncbi.nlm.nih.gov/pubmed/26848587
http://dx.doi.org/10.1371/journal.pone.0147862
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