Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells

A close link between Ca2+, ATP level, and neurogenesis is apparent; however, the molecular mechanisms of this relationship have not been completely elucidated. Transient elevations of cytosolic Ca2+ may boost ATP synthesis, but ATP is also consumed by ion pumps to maintain a low Ca2+ in cytosol. In...

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Main Authors: Tomasz Boczek, Malwina Lisek, Bozena Ferenc, Antoni Kowalski, Magdalena Wiktorska, Ludmila Zylinska
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:BioMed Research International
Online Access:http://dx.doi.org/10.1155/2014/735106
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spelling doaj-9f8b37dfe8b042518aa82e86520ea9f92020-11-25T00:25:31ZengHindawi LimitedBioMed Research International2314-61332314-61412014-01-01201410.1155/2014/735106735106Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 CellsTomasz Boczek0Malwina Lisek1Bozena Ferenc2Antoni Kowalski3Magdalena Wiktorska4Ludmila Zylinska5Department of Molecular Neurochemistry, Medical University, Mazowiecka 6/8 Street, 92215 Lodz, PolandDepartment of Molecular Neurochemistry, Medical University, Mazowiecka 6/8 Street, 92215 Lodz, PolandDepartment of Molecular Neurochemistry, Medical University, Mazowiecka 6/8 Street, 92215 Lodz, PolandDepartment of Molecular Neurochemistry, Medical University, Mazowiecka 6/8 Street, 92215 Lodz, PolandDepartment of Molecular Cell Mechanisms, Medical University, Mazowiecka 6/8 Street, 92-215 Lodz, PolandDepartment of Molecular Neurochemistry, Medical University, Mazowiecka 6/8 Street, 92215 Lodz, PolandA close link between Ca2+, ATP level, and neurogenesis is apparent; however, the molecular mechanisms of this relationship have not been completely elucidated. Transient elevations of cytosolic Ca2+ may boost ATP synthesis, but ATP is also consumed by ion pumps to maintain a low Ca2+ in cytosol. In differentiation process plasma membrane Ca2+ ATPase (PMCA) is considered as one of the major players for Ca2+ homeostasis. From four PMCA isoforms, the fastest PMCA2 and PMCA3 are expressed predominantly in excitable cells. In the present study we assessed whether PMCA isoform composition may affect energy balance in differentiating PC12 cells. We found that PMCA2-downregulated cells showed higher basal O2 consumption, lower NAD(P)H level, and increased activity of ETC. These changes associated with higher [Ca2+]c resulted in elevated ATP level. Since PMCA2-reduced cells demonstrated greatest sensitivity to ETC inhibition, we suppose that the main source of energy for PMCA isoforms 1, 3, and 4 was oxidative phosphorylation. Contrary, cells with unchanged PMCA2 expression exhibited prevalence of glycolysis in ATP generation. Our results with PMCA2- or PMCA3-downregulated lines provide an evidence of a novel role of PMCA isoforms in regulation of bioenergetic pathways, and mitochondrial activity and maintenance of ATP level during PC12 cells differentiation.http://dx.doi.org/10.1155/2014/735106
collection DOAJ
language English
format Article
sources DOAJ
author Tomasz Boczek
Malwina Lisek
Bozena Ferenc
Antoni Kowalski
Magdalena Wiktorska
Ludmila Zylinska
spellingShingle Tomasz Boczek
Malwina Lisek
Bozena Ferenc
Antoni Kowalski
Magdalena Wiktorska
Ludmila Zylinska
Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
BioMed Research International
author_facet Tomasz Boczek
Malwina Lisek
Bozena Ferenc
Antoni Kowalski
Magdalena Wiktorska
Ludmila Zylinska
author_sort Tomasz Boczek
title Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
title_short Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
title_full Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
title_fullStr Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
title_full_unstemmed Silencing of Plasma Membrane Ca2+-ATPase Isoforms 2 and 3 Impairs Energy Metabolism in Differentiating PC12 Cells
title_sort silencing of plasma membrane ca2+-atpase isoforms 2 and 3 impairs energy metabolism in differentiating pc12 cells
publisher Hindawi Limited
series BioMed Research International
issn 2314-6133
2314-6141
publishDate 2014-01-01
description A close link between Ca2+, ATP level, and neurogenesis is apparent; however, the molecular mechanisms of this relationship have not been completely elucidated. Transient elevations of cytosolic Ca2+ may boost ATP synthesis, but ATP is also consumed by ion pumps to maintain a low Ca2+ in cytosol. In differentiation process plasma membrane Ca2+ ATPase (PMCA) is considered as one of the major players for Ca2+ homeostasis. From four PMCA isoforms, the fastest PMCA2 and PMCA3 are expressed predominantly in excitable cells. In the present study we assessed whether PMCA isoform composition may affect energy balance in differentiating PC12 cells. We found that PMCA2-downregulated cells showed higher basal O2 consumption, lower NAD(P)H level, and increased activity of ETC. These changes associated with higher [Ca2+]c resulted in elevated ATP level. Since PMCA2-reduced cells demonstrated greatest sensitivity to ETC inhibition, we suppose that the main source of energy for PMCA isoforms 1, 3, and 4 was oxidative phosphorylation. Contrary, cells with unchanged PMCA2 expression exhibited prevalence of glycolysis in ATP generation. Our results with PMCA2- or PMCA3-downregulated lines provide an evidence of a novel role of PMCA isoforms in regulation of bioenergetic pathways, and mitochondrial activity and maintenance of ATP level during PC12 cells differentiation.
url http://dx.doi.org/10.1155/2014/735106
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