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Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion

We previously reported that phospholipase C-related catalytically inactive protein (PRIP)-knockout mice exhibited hyperinsulinemia. Here, we investigated the role of PRIP in insulin granule exocytosis using Prip-knockdown mouse insulinoma (MIN6) cells. Insulin release from Prip-knockdown MIN6 cells...

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Autores principales: Asano, Satoshi, Nemoto, Tomomi, Kitayama, Tomoya, Harada, Kae, Zhang, Jun, Harada, Kana, Tanida, Isei, Hirata, Masato, Kanematsu, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058080/
https://www.ncbi.nlm.nih.gov/pubmed/24812354
http://dx.doi.org/10.1242/bio.20147591
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author Asano, Satoshi
Nemoto, Tomomi
Kitayama, Tomoya
Harada, Kae
Zhang, Jun
Harada, Kana
Tanida, Isei
Hirata, Masato
Kanematsu, Takashi
author_facet Asano, Satoshi
Nemoto, Tomomi
Kitayama, Tomoya
Harada, Kae
Zhang, Jun
Harada, Kana
Tanida, Isei
Hirata, Masato
Kanematsu, Takashi
author_sort Asano, Satoshi
collection PubMed
description We previously reported that phospholipase C-related catalytically inactive protein (PRIP)-knockout mice exhibited hyperinsulinemia. Here, we investigated the role of PRIP in insulin granule exocytosis using Prip-knockdown mouse insulinoma (MIN6) cells. Insulin release from Prip-knockdown MIN6 cells was higher than that from control cells, and Prip knockdown facilitated movement of GFP-phogrin-labeled insulin secretory vesicles. Double-immunofluorescent staining and density step-gradient analyses showed that the KIF5B motor protein co-localized with insulin vesicles in Prip-knockdown MIN6 cells. Knockdown of GABA(A)-receptor-associated protein (GABARAP), a microtubule-associated PRIP-binding partner, by Gabarap silencing in MIN6 cells reduced the co-localization of insulin vesicles with KIF5B and the movement of vesicles, resulting in decreased insulin secretion. However, the co-localization of KIF5B with microtubules was not altered in Prip- and Gabarap-knockdown cells. The presence of unbound GABARAP, freed either by an interference peptide or by Prip silencing, in MIN6 cells enhanced the co-localization of insulin vesicles with microtubules and promoted vesicle mobility. Taken together, these data demonstrate that PRIP and GABARAP function in a complex to regulate KIF5B-mediated insulin secretion, providing new insights into insulin exocytic mechanisms.
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spelling pubmed-40580802014-07-15 Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion Asano, Satoshi Nemoto, Tomomi Kitayama, Tomoya Harada, Kae Zhang, Jun Harada, Kana Tanida, Isei Hirata, Masato Kanematsu, Takashi Biol Open Research Article We previously reported that phospholipase C-related catalytically inactive protein (PRIP)-knockout mice exhibited hyperinsulinemia. Here, we investigated the role of PRIP in insulin granule exocytosis using Prip-knockdown mouse insulinoma (MIN6) cells. Insulin release from Prip-knockdown MIN6 cells was higher than that from control cells, and Prip knockdown facilitated movement of GFP-phogrin-labeled insulin secretory vesicles. Double-immunofluorescent staining and density step-gradient analyses showed that the KIF5B motor protein co-localized with insulin vesicles in Prip-knockdown MIN6 cells. Knockdown of GABA(A)-receptor-associated protein (GABARAP), a microtubule-associated PRIP-binding partner, by Gabarap silencing in MIN6 cells reduced the co-localization of insulin vesicles with KIF5B and the movement of vesicles, resulting in decreased insulin secretion. However, the co-localization of KIF5B with microtubules was not altered in Prip- and Gabarap-knockdown cells. The presence of unbound GABARAP, freed either by an interference peptide or by Prip silencing, in MIN6 cells enhanced the co-localization of insulin vesicles with microtubules and promoted vesicle mobility. Taken together, these data demonstrate that PRIP and GABARAP function in a complex to regulate KIF5B-mediated insulin secretion, providing new insights into insulin exocytic mechanisms. The Company of Biologists 2014-05-08 /pmc/articles/PMC4058080/ /pubmed/24812354 http://dx.doi.org/10.1242/bio.20147591 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Asano, Satoshi
Nemoto, Tomomi
Kitayama, Tomoya
Harada, Kae
Zhang, Jun
Harada, Kana
Tanida, Isei
Hirata, Masato
Kanematsu, Takashi
Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title_full Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title_fullStr Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title_full_unstemmed Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title_short Phospholipase C-related catalytically inactive protein (PRIP) controls KIF5B-mediated insulin secretion
title_sort phospholipase c-related catalytically inactive protein (prip) controls kif5b-mediated insulin secretion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058080/
https://www.ncbi.nlm.nih.gov/pubmed/24812354
http://dx.doi.org/10.1242/bio.20147591
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