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The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels

Insulin is produced and stored inside the pancreatic β-cell secretory granules, where it is assumed to form Zn(2+)-stabilized oligomers. However, the actual storage forms of this hormone and the impact of zinc ions on insulin production in vivo are not known. Our initial X-ray fluorescence experimen...

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Autores principales: Dzianová, Petra, Asai, Seiya, Chrudinová, Martina, Kosinová, Lucie, Potalitsyn, Pavlo, Šácha, Pavel, Hadravová, Romana, Selicharová, Irena, Kříž, Jan, Turkenburg, Johan P., Brzozowski, Andrzej Marek, Jiráček, Jiří, Žáková, Lenka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7653362/
https://www.ncbi.nlm.nih.gov/pubmed/33081637
http://dx.doi.org/10.1098/rsob.200137
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author Dzianová, Petra
Asai, Seiya
Chrudinová, Martina
Kosinová, Lucie
Potalitsyn, Pavlo
Šácha, Pavel
Hadravová, Romana
Selicharová, Irena
Kříž, Jan
Turkenburg, Johan P.
Brzozowski, Andrzej Marek
Jiráček, Jiří
Žáková, Lenka
author_facet Dzianová, Petra
Asai, Seiya
Chrudinová, Martina
Kosinová, Lucie
Potalitsyn, Pavlo
Šácha, Pavel
Hadravová, Romana
Selicharová, Irena
Kříž, Jan
Turkenburg, Johan P.
Brzozowski, Andrzej Marek
Jiráček, Jiří
Žáková, Lenka
author_sort Dzianová, Petra
collection PubMed
description Insulin is produced and stored inside the pancreatic β-cell secretory granules, where it is assumed to form Zn(2+)-stabilized oligomers. However, the actual storage forms of this hormone and the impact of zinc ions on insulin production in vivo are not known. Our initial X-ray fluorescence experiment on granules from native Langerhans islets and insulinoma-derived INS-1E cells revealed a considerable difference in the zinc content. This led our further investigation to evaluate the impact of the intra-granular Zn(2+) levels on the production and storage of insulin in different model β-cells. Here, we systematically compared zinc and insulin contents in the permanent INS-1E and BRIN-BD11 β-cells and in the native rat pancreatic islets by flow cytometry, confocal microscopy, immunoblotting, specific messenger RNA (mRNA) and total insulin analysis. These studies revealed an impaired insulin production in the permanent β-cell lines with the diminished intracellular zinc content. The drop in insulin and Zn(2+) levels was paralleled by a lower expression of ZnT8 zinc transporter mRNA and hampered proinsulin processing/folding in both permanent cell lines. To summarize, we showed that the disruption of zinc homeostasis in the model β-cells correlated with their impaired insulin and ZnT8 production. This indicates a need for in-depth fundamental research about the role of zinc in insulin production and storage.
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spelling pubmed-76533622020-11-16 The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels Dzianová, Petra Asai, Seiya Chrudinová, Martina Kosinová, Lucie Potalitsyn, Pavlo Šácha, Pavel Hadravová, Romana Selicharová, Irena Kříž, Jan Turkenburg, Johan P. Brzozowski, Andrzej Marek Jiráček, Jiří Žáková, Lenka Open Biol Research Insulin is produced and stored inside the pancreatic β-cell secretory granules, where it is assumed to form Zn(2+)-stabilized oligomers. However, the actual storage forms of this hormone and the impact of zinc ions on insulin production in vivo are not known. Our initial X-ray fluorescence experiment on granules from native Langerhans islets and insulinoma-derived INS-1E cells revealed a considerable difference in the zinc content. This led our further investigation to evaluate the impact of the intra-granular Zn(2+) levels on the production and storage of insulin in different model β-cells. Here, we systematically compared zinc and insulin contents in the permanent INS-1E and BRIN-BD11 β-cells and in the native rat pancreatic islets by flow cytometry, confocal microscopy, immunoblotting, specific messenger RNA (mRNA) and total insulin analysis. These studies revealed an impaired insulin production in the permanent β-cell lines with the diminished intracellular zinc content. The drop in insulin and Zn(2+) levels was paralleled by a lower expression of ZnT8 zinc transporter mRNA and hampered proinsulin processing/folding in both permanent cell lines. To summarize, we showed that the disruption of zinc homeostasis in the model β-cells correlated with their impaired insulin and ZnT8 production. This indicates a need for in-depth fundamental research about the role of zinc in insulin production and storage. The Royal Society 2020-10-21 /pmc/articles/PMC7653362/ /pubmed/33081637 http://dx.doi.org/10.1098/rsob.200137 Text en © 2020 The Authors. http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/http://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Dzianová, Petra
Asai, Seiya
Chrudinová, Martina
Kosinová, Lucie
Potalitsyn, Pavlo
Šácha, Pavel
Hadravová, Romana
Selicharová, Irena
Kříž, Jan
Turkenburg, Johan P.
Brzozowski, Andrzej Marek
Jiráček, Jiří
Žáková, Lenka
The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title_full The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title_fullStr The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title_full_unstemmed The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title_short The efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their Zn(2+) levels
title_sort efficiency of insulin production and its content in insulin-expressing model β-cells correlate with their zn(2+) levels
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7653362/
https://www.ncbi.nlm.nih.gov/pubmed/33081637
http://dx.doi.org/10.1098/rsob.200137
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