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Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion

Glomerular epithelial cells, podocytes, are insulin responsive and can develop insulin resistance. Here, we demonstrate that the small GTPase septin 7 forms a complex with nonmuscle myosin heavy chain IIA (NMHC-IIA; encoded by MYH9), a component of the nonmuscle myosin IIA (NM-IIA) hexameric complex...

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Autores principales: Wasik, Anita A., Dumont, Vincent, Tienari, Jukka, Nyman, Tuula A., Fogarty, Christopher L., Forsblom, Carol, Lehto, Markku, Lehtonen, Eero, Groop, Per-Henrik, Lehtonen, Sanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5243148/
https://www.ncbi.nlm.nih.gov/pubmed/28011197
http://dx.doi.org/10.1016/j.yexcr.2016.12.010
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author Wasik, Anita A.
Dumont, Vincent
Tienari, Jukka
Nyman, Tuula A.
Fogarty, Christopher L.
Forsblom, Carol
Lehto, Markku
Lehtonen, Eero
Groop, Per-Henrik
Lehtonen, Sanna
author_facet Wasik, Anita A.
Dumont, Vincent
Tienari, Jukka
Nyman, Tuula A.
Fogarty, Christopher L.
Forsblom, Carol
Lehto, Markku
Lehtonen, Eero
Groop, Per-Henrik
Lehtonen, Sanna
author_sort Wasik, Anita A.
collection PubMed
description Glomerular epithelial cells, podocytes, are insulin responsive and can develop insulin resistance. Here, we demonstrate that the small GTPase septin 7 forms a complex with nonmuscle myosin heavy chain IIA (NMHC-IIA; encoded by MYH9), a component of the nonmuscle myosin IIA (NM-IIA) hexameric complex. We observed that knockdown of NMHC-IIA decreases insulin-stimulated glucose uptake into podocytes. Both septin 7 and NM-IIA associate with SNAP23, a SNARE protein involved in GLUT4 storage vesicle (GSV) docking and fusion with the plasma membrane. We observed that insulin decreases the level of septin 7 and increases the activity of NM-IIA in the SNAP23 complex, as visualized by increased phosphorylation of myosin regulatory light chain. Also knockdown of septin 7 increases the activity of NM-IIA in the complex. The activity of NM-IIA is increased in diabetic rat glomeruli and cultured human podocytes exposed to macroalbuminuric sera from patients with type 1 diabetes. Collectively, the data suggest that the activity of NM-IIA in the SNAP23 complex plays a key role in insulin-stimulated glucose uptake into podocytes. Furthermore, we observed that septin 7 reduces the activity of NM-IIA in the SNAP23 complex and thereby hinders GSV docking and fusion with the plasma membrane.
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spelling pubmed-52431482017-01-26 Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion Wasik, Anita A. Dumont, Vincent Tienari, Jukka Nyman, Tuula A. Fogarty, Christopher L. Forsblom, Carol Lehto, Markku Lehtonen, Eero Groop, Per-Henrik Lehtonen, Sanna Exp Cell Res Article Glomerular epithelial cells, podocytes, are insulin responsive and can develop insulin resistance. Here, we demonstrate that the small GTPase septin 7 forms a complex with nonmuscle myosin heavy chain IIA (NMHC-IIA; encoded by MYH9), a component of the nonmuscle myosin IIA (NM-IIA) hexameric complex. We observed that knockdown of NMHC-IIA decreases insulin-stimulated glucose uptake into podocytes. Both septin 7 and NM-IIA associate with SNAP23, a SNARE protein involved in GLUT4 storage vesicle (GSV) docking and fusion with the plasma membrane. We observed that insulin decreases the level of septin 7 and increases the activity of NM-IIA in the SNAP23 complex, as visualized by increased phosphorylation of myosin regulatory light chain. Also knockdown of septin 7 increases the activity of NM-IIA in the complex. The activity of NM-IIA is increased in diabetic rat glomeruli and cultured human podocytes exposed to macroalbuminuric sera from patients with type 1 diabetes. Collectively, the data suggest that the activity of NM-IIA in the SNAP23 complex plays a key role in insulin-stimulated glucose uptake into podocytes. Furthermore, we observed that septin 7 reduces the activity of NM-IIA in the SNAP23 complex and thereby hinders GSV docking and fusion with the plasma membrane. Academic Press 2017-01-15 /pmc/articles/PMC5243148/ /pubmed/28011197 http://dx.doi.org/10.1016/j.yexcr.2016.12.010 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Wasik, Anita A.
Dumont, Vincent
Tienari, Jukka
Nyman, Tuula A.
Fogarty, Christopher L.
Forsblom, Carol
Lehto, Markku
Lehtonen, Eero
Groop, Per-Henrik
Lehtonen, Sanna
Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title_full Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title_fullStr Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title_full_unstemmed Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title_short Septin 7 reduces nonmuscle myosin IIA activity in the SNAP23 complex and hinders GLUT4 storage vesicle docking and fusion
title_sort septin 7 reduces nonmuscle myosin iia activity in the snap23 complex and hinders glut4 storage vesicle docking and fusion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5243148/
https://www.ncbi.nlm.nih.gov/pubmed/28011197
http://dx.doi.org/10.1016/j.yexcr.2016.12.010
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