Cargando…

Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells

In AtT-20 cells ACTH secretion is regulated by both Ca(2+ )and G proteins. We previously demonstrated that calnuc, an EF-hand Ca(2+ )binding protein which regulates Alzheimer's β-amyloid precursor protein (APP) biogenesis, binds both Ca(2+ )as well as Gα subunits. Here we investigate calnuc...

Descripción completa

Detalles Bibliográficos
Autores principales: Lin, Ping, Fischer, Thierry, Lavoie, Christine, Huang, Haining, Farquhar, Marilyn Gist
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2670299/
https://www.ncbi.nlm.nih.gov/pubmed/19320978
http://dx.doi.org/10.1186/1750-1326-4-15
_version_ 1782166306425929728
author Lin, Ping
Fischer, Thierry
Lavoie, Christine
Huang, Haining
Farquhar, Marilyn Gist
author_facet Lin, Ping
Fischer, Thierry
Lavoie, Christine
Huang, Haining
Farquhar, Marilyn Gist
author_sort Lin, Ping
collection PubMed
description In AtT-20 cells ACTH secretion is regulated by both Ca(2+ )and G proteins. We previously demonstrated that calnuc, an EF-hand Ca(2+ )binding protein which regulates Alzheimer's β-amyloid precursor protein (APP) biogenesis, binds both Ca(2+ )as well as Gα subunits. Here we investigate calnuc's role in G protein-mediated regulation of ACTH secretion in AtT-20 neuroendocrine secretory cells stably overexpressing calnuc-GFP. Similar to endogenous calnuc, calnuc-GFP is mainly found in the Golgi, on the plasma membrane (PM), and associated with regulated secretion granules (RSG). By deconvolution immunofluorescence, calnuc-GFP partially colocalizes with Gαi1/2 and Gαi3 at the PM and on RSG. Cytosolic calnuc(ΔSS)-CFP with the signal sequence deleted also partially colocalizes with RSG and partially cosediments with Gαi1/2 in fractions enriched in RSG. Overexpression of calnuc-GFP specifically increases the distribution of Gαi1/2 on the PM whereas the distribution of Gβ subunits and synaptobrevin 2 (Vamp 2) is unchanged. Overexpression of calnuc-GFP or cytosolic calnuc(ΔSS)-CFP enhances ACTH secretion two-fold triggered by mastoparan or GTPγS but does not significantly affect glycosaminoglycan (GAG) chain secretion along the constitutive pathway or basal secretion of ACTH. Calnuc's facilitating effects on ACTH secretion are decreased after introducing anti-Gαi1/2, Gαi3, Gβ or calnuc IgG into permeabilized cells but not when Gα12 or preimmune IgG is introduced. The results suggest that calnuc binds to Gα subunits on the Golgi and on RSG and that overexpression of calnuc causes redistribution of Gαi subunits to the PM and RSG, indicating that calnuc plays a role in dynamic distribution of only Gα but not Gβ subunits. Thus calnuc may connect G protein signaling and calcium signaling during regulated secretion.
format Text
id pubmed-2670299
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-26702992009-04-18 Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells Lin, Ping Fischer, Thierry Lavoie, Christine Huang, Haining Farquhar, Marilyn Gist Mol Neurodegener Research Article In AtT-20 cells ACTH secretion is regulated by both Ca(2+ )and G proteins. We previously demonstrated that calnuc, an EF-hand Ca(2+ )binding protein which regulates Alzheimer's β-amyloid precursor protein (APP) biogenesis, binds both Ca(2+ )as well as Gα subunits. Here we investigate calnuc's role in G protein-mediated regulation of ACTH secretion in AtT-20 neuroendocrine secretory cells stably overexpressing calnuc-GFP. Similar to endogenous calnuc, calnuc-GFP is mainly found in the Golgi, on the plasma membrane (PM), and associated with regulated secretion granules (RSG). By deconvolution immunofluorescence, calnuc-GFP partially colocalizes with Gαi1/2 and Gαi3 at the PM and on RSG. Cytosolic calnuc(ΔSS)-CFP with the signal sequence deleted also partially colocalizes with RSG and partially cosediments with Gαi1/2 in fractions enriched in RSG. Overexpression of calnuc-GFP specifically increases the distribution of Gαi1/2 on the PM whereas the distribution of Gβ subunits and synaptobrevin 2 (Vamp 2) is unchanged. Overexpression of calnuc-GFP or cytosolic calnuc(ΔSS)-CFP enhances ACTH secretion two-fold triggered by mastoparan or GTPγS but does not significantly affect glycosaminoglycan (GAG) chain secretion along the constitutive pathway or basal secretion of ACTH. Calnuc's facilitating effects on ACTH secretion are decreased after introducing anti-Gαi1/2, Gαi3, Gβ or calnuc IgG into permeabilized cells but not when Gα12 or preimmune IgG is introduced. The results suggest that calnuc binds to Gα subunits on the Golgi and on RSG and that overexpression of calnuc causes redistribution of Gαi subunits to the PM and RSG, indicating that calnuc plays a role in dynamic distribution of only Gα but not Gβ subunits. Thus calnuc may connect G protein signaling and calcium signaling during regulated secretion. BioMed Central 2009-03-25 /pmc/articles/PMC2670299/ /pubmed/19320978 http://dx.doi.org/10.1186/1750-1326-4-15 Text en Copyright © 2009 Lin et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lin, Ping
Fischer, Thierry
Lavoie, Christine
Huang, Haining
Farquhar, Marilyn Gist
Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title_full Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title_fullStr Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title_full_unstemmed Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title_short Calnuc plays a role in dynamic distribution of Gαi but not Gβ subunits and modulates ACTH secretion in AtT-20 neuroendocrine secretory cells
title_sort calnuc plays a role in dynamic distribution of gαi but not gβ subunits and modulates acth secretion in att-20 neuroendocrine secretory cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2670299/
https://www.ncbi.nlm.nih.gov/pubmed/19320978
http://dx.doi.org/10.1186/1750-1326-4-15
work_keys_str_mv AT linping calnucplaysaroleindynamicdistributionofgaibutnotgbsubunitsandmodulatesacthsecretioninatt20neuroendocrinesecretorycells
AT fischerthierry calnucplaysaroleindynamicdistributionofgaibutnotgbsubunitsandmodulatesacthsecretioninatt20neuroendocrinesecretorycells
AT lavoiechristine calnucplaysaroleindynamicdistributionofgaibutnotgbsubunitsandmodulatesacthsecretioninatt20neuroendocrinesecretorycells
AT huanghaining calnucplaysaroleindynamicdistributionofgaibutnotgbsubunitsandmodulatesacthsecretioninatt20neuroendocrinesecretorycells
AT farquharmarilyngist calnucplaysaroleindynamicdistributionofgaibutnotgbsubunitsandmodulatesacthsecretioninatt20neuroendocrinesecretorycells