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Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis

Rab3a is a small GTPase of the Rab3 subfamily that acts during late stages of Ca(2+)-regulated exocytosis. Previous functional analysis in pituitary melanotrophs described Rab3a as a positive regulator of Ca(2+)-dependent exocytosis. However, the precise role of the Rab3a isoform on the kinetics and...

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Autores principales: Sedej, Simon, Klemen, Maša Skelin, Schlüter, Oliver M., Rupnik, Marjan Slak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3804518/
https://www.ncbi.nlm.nih.gov/pubmed/24205339
http://dx.doi.org/10.1371/journal.pone.0078883
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author Sedej, Simon
Klemen, Maša Skelin
Schlüter, Oliver M.
Rupnik, Marjan Slak
author_facet Sedej, Simon
Klemen, Maša Skelin
Schlüter, Oliver M.
Rupnik, Marjan Slak
author_sort Sedej, Simon
collection PubMed
description Rab3a is a small GTPase of the Rab3 subfamily that acts during late stages of Ca(2+)-regulated exocytosis. Previous functional analysis in pituitary melanotrophs described Rab3a as a positive regulator of Ca(2+)-dependent exocytosis. However, the precise role of the Rab3a isoform on the kinetics and intracellular [Ca(2+)] sensitivity of regulated exocytosis, which may affect the availability of two major peptide hormones, α-melanocyte stimulating hormone (α-MSH) and β-endorphin in plasma, remain elusive. We employed Rab3a knock-out mice (Rab3a KO) to explore the secretory phenotype in melanotrophs from fresh pituitary tissue slices. High resolution capacitance measurements showed that Rab3a KO melanotrophs possessed impaired Ca(2+)-triggered secretory activity as compared to wild-type cells. The hampered secretion was associated with the absence of cAMP-guanine exchange factor II/ Epac2-dependent secretory component. This component has been attributed to high Ca(2+)-sensitive release-ready vesicles as determined by slow photo-release of caged Ca(2+). Radioimmunoassay revealed that α-MSH, but not β-endorphin, was elevated in the plasma of Rab3a KO mice, indicating increased constitutive exocytosis of α-MSH. Increased constitutive secretion of α-MSH from incubated tissue slices was associated with reduced α-MSH cellular content in Rab3a-deficient pituitary cells. Viral re-expression of the Rab3a protein in vitro rescued the secretory phenotype of melanotrophs from Rab3a KO mice. In conclusion, we suggest that Rab3a deficiency promotes constitutive secretion and underlies selective impairment of Ca(2+)-dependent release of α-MSH.
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spelling pubmed-38045182013-11-07 Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis Sedej, Simon Klemen, Maša Skelin Schlüter, Oliver M. Rupnik, Marjan Slak PLoS One Research Article Rab3a is a small GTPase of the Rab3 subfamily that acts during late stages of Ca(2+)-regulated exocytosis. Previous functional analysis in pituitary melanotrophs described Rab3a as a positive regulator of Ca(2+)-dependent exocytosis. However, the precise role of the Rab3a isoform on the kinetics and intracellular [Ca(2+)] sensitivity of regulated exocytosis, which may affect the availability of two major peptide hormones, α-melanocyte stimulating hormone (α-MSH) and β-endorphin in plasma, remain elusive. We employed Rab3a knock-out mice (Rab3a KO) to explore the secretory phenotype in melanotrophs from fresh pituitary tissue slices. High resolution capacitance measurements showed that Rab3a KO melanotrophs possessed impaired Ca(2+)-triggered secretory activity as compared to wild-type cells. The hampered secretion was associated with the absence of cAMP-guanine exchange factor II/ Epac2-dependent secretory component. This component has been attributed to high Ca(2+)-sensitive release-ready vesicles as determined by slow photo-release of caged Ca(2+). Radioimmunoassay revealed that α-MSH, but not β-endorphin, was elevated in the plasma of Rab3a KO mice, indicating increased constitutive exocytosis of α-MSH. Increased constitutive secretion of α-MSH from incubated tissue slices was associated with reduced α-MSH cellular content in Rab3a-deficient pituitary cells. Viral re-expression of the Rab3a protein in vitro rescued the secretory phenotype of melanotrophs from Rab3a KO mice. In conclusion, we suggest that Rab3a deficiency promotes constitutive secretion and underlies selective impairment of Ca(2+)-dependent release of α-MSH. Public Library of Science 2013-10-21 /pmc/articles/PMC3804518/ /pubmed/24205339 http://dx.doi.org/10.1371/journal.pone.0078883 Text en © 2013 Sedej 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sedej, Simon
Klemen, Maša Skelin
Schlüter, Oliver M.
Rupnik, Marjan Slak
Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title_full Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title_fullStr Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title_full_unstemmed Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title_short Rab3a Is Critical for Trapping Alpha-MSH Granules in the High Ca(2+)-Affinity Pool by Preventing Constitutive Exocytosis
title_sort rab3a is critical for trapping alpha-msh granules in the high ca(2+)-affinity pool by preventing constitutive exocytosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3804518/
https://www.ncbi.nlm.nih.gov/pubmed/24205339
http://dx.doi.org/10.1371/journal.pone.0078883
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