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Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity

Aim: We previously revealed that Ca(++)-activated calmodulin binds to ABCA1 by the region near the PEST sequence and retards its calpain-mediated degradation to increase HDL biogenesis. Calmodulin activity is reportedly modulated also by other nutritional divalent cations; thus, we attempted to dete...

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Autores principales: Lu, Rui, Ishikawa, Takahiro, Tanaka, Mamoru, Tsuboi, Tomoe, Yokoyama, Shinji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japan Atherosclerosis Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8049148/
https://www.ncbi.nlm.nih.gov/pubmed/32581187
http://dx.doi.org/10.5551/jat.55384
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author Lu, Rui
Ishikawa, Takahiro
Tanaka, Mamoru
Tsuboi, Tomoe
Yokoyama, Shinji
author_facet Lu, Rui
Ishikawa, Takahiro
Tanaka, Mamoru
Tsuboi, Tomoe
Yokoyama, Shinji
author_sort Lu, Rui
collection PubMed
description Aim: We previously revealed that Ca(++)-activated calmodulin binds to ABCA1 by the region near the PEST sequence and retards its calpain-mediated degradation to increase HDL biogenesis. Calmodulin activity is reportedly modulated also by other nutritional divalent cations; thus, we attempted to determine whether Zn(++) is involved in the regulation of ABCA1 stability through the modulation of calmodulin activity. Methods: The effects of Zn(++) on ABCA1 expression was investigated in J774 mouse macrophage cell-line cells and HepG2 human hepatoma cell-line cells. Results: Zn(++) increased ABCA1 expression, not by increasing the mRNA but by attenuating its decay rate, more prominently in the presence of cAMP. Accordingly, it enhanced cell cholesterol release with extracellular apolipo-protein A-I. Calmodulin binding to ABCA1 was increased by Zn(++) and Ca(++). Zn(++) suppressed calpain-mediated hydrolysis of the peptide of ABCA1 cytosolic loop, including the PEST sequence and the calmodulin-binding site, in a calmodulin-dependent fashion, in the presence of the minimum amount of Ca(++) to activate calpain, but not calmodulin. Calpain activity was not directly inhibited by Zn(++) at the concentration for enhancing calmodulin binding to ABCA1. Conclusion: Nutritional divalent cation Zn(++) is involved in the regulation of ABCA1 activity and biogenesis of HDL through the modulation of calmodulin activity. The results were consistent with previous clinical findings that Zn(++) increased plasma HDL in the conditions of sympathetic activation, such as type 2 diabetes and chronic hemodialysis.
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spelling pubmed-80491482021-04-29 Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity Lu, Rui Ishikawa, Takahiro Tanaka, Mamoru Tsuboi, Tomoe Yokoyama, Shinji J Atheroscler Thromb Original Article Aim: We previously revealed that Ca(++)-activated calmodulin binds to ABCA1 by the region near the PEST sequence and retards its calpain-mediated degradation to increase HDL biogenesis. Calmodulin activity is reportedly modulated also by other nutritional divalent cations; thus, we attempted to determine whether Zn(++) is involved in the regulation of ABCA1 stability through the modulation of calmodulin activity. Methods: The effects of Zn(++) on ABCA1 expression was investigated in J774 mouse macrophage cell-line cells and HepG2 human hepatoma cell-line cells. Results: Zn(++) increased ABCA1 expression, not by increasing the mRNA but by attenuating its decay rate, more prominently in the presence of cAMP. Accordingly, it enhanced cell cholesterol release with extracellular apolipo-protein A-I. Calmodulin binding to ABCA1 was increased by Zn(++) and Ca(++). Zn(++) suppressed calpain-mediated hydrolysis of the peptide of ABCA1 cytosolic loop, including the PEST sequence and the calmodulin-binding site, in a calmodulin-dependent fashion, in the presence of the minimum amount of Ca(++) to activate calpain, but not calmodulin. Calpain activity was not directly inhibited by Zn(++) at the concentration for enhancing calmodulin binding to ABCA1. Conclusion: Nutritional divalent cation Zn(++) is involved in the regulation of ABCA1 activity and biogenesis of HDL through the modulation of calmodulin activity. The results were consistent with previous clinical findings that Zn(++) increased plasma HDL in the conditions of sympathetic activation, such as type 2 diabetes and chronic hemodialysis. Japan Atherosclerosis Society 2021-03-01 /pmc/articles/PMC8049148/ /pubmed/32581187 http://dx.doi.org/10.5551/jat.55384 Text en 2021 Japan Atherosclerosis Society https://creativecommons.org/licenses/by-nc-sa/3.0/This article is distributed under the terms of the latest version of CC BY-NC-SA defined by the Creative Commons Attribution License.http://creativecommons.org/licenses/by-nc-sa/3.0/ (https://creativecommons.org/licenses/by-nc-sa/3.0/)
spellingShingle Original Article
Lu, Rui
Ishikawa, Takahiro
Tanaka, Mamoru
Tsuboi, Tomoe
Yokoyama, Shinji
Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title_full Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title_fullStr Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title_full_unstemmed Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title_short Zinc Increases ABCA1 by Attenuating Its Clearance Through the Modulation of Calmodulin Activity
title_sort zinc increases abca1 by attenuating its clearance through the modulation of calmodulin activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8049148/
https://www.ncbi.nlm.nih.gov/pubmed/32581187
http://dx.doi.org/10.5551/jat.55384
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