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The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling

Zinc has been considered as a vital constituent of proteins, including enzymes. Mobile reactive zinc (Zn(2+)) is the key form of zinc involved in signal transductions, which are mainly driven by its binding to proteins or the release of zinc from proteins, possibly via a redox switch. There has been...

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Autores principales: Lee, Sung Ryul, Noh, Su Jin, Pronto, Julius Ryan, Jeong, Yu Jeong, Kim, Hyoung Kyu, Song, In Sung, Xu, Zhelong, Kwon, Hyog Young, Kang, Se Chan, Sohn, Eun-Hwa, Ko, Kyung Soo, Rhee, Byoung Doo, Kim, Nari, Han, Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Physiological Society and The Korean Society of Pharmacology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4553398/
https://www.ncbi.nlm.nih.gov/pubmed/26330751
http://dx.doi.org/10.4196/kjpp.2015.19.5.389
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author Lee, Sung Ryul
Noh, Su Jin
Pronto, Julius Ryan
Jeong, Yu Jeong
Kim, Hyoung Kyu
Song, In Sung
Xu, Zhelong
Kwon, Hyog Young
Kang, Se Chan
Sohn, Eun-Hwa
Ko, Kyung Soo
Rhee, Byoung Doo
Kim, Nari
Han, Jin
author_facet Lee, Sung Ryul
Noh, Su Jin
Pronto, Julius Ryan
Jeong, Yu Jeong
Kim, Hyoung Kyu
Song, In Sung
Xu, Zhelong
Kwon, Hyog Young
Kang, Se Chan
Sohn, Eun-Hwa
Ko, Kyung Soo
Rhee, Byoung Doo
Kim, Nari
Han, Jin
author_sort Lee, Sung Ryul
collection PubMed
description Zinc has been considered as a vital constituent of proteins, including enzymes. Mobile reactive zinc (Zn(2+)) is the key form of zinc involved in signal transductions, which are mainly driven by its binding to proteins or the release of zinc from proteins, possibly via a redox switch. There has been growing evidence of zinc's critical role in cell signaling, due to its flexible coordination geometry and rapid shifts in protein conformation to perform biological reactions. The importance and complexity of Zn(2+) activity has been presumed to parallel the degree of calcium's participation in cellular processes. Whole body and cellular Zn(2+) levels are largely regulated by metallothioneins (MTs), Zn(2+) importers (ZIPs), and Zn(2+) transporters (ZnTs). Numerous proteins involved in signaling pathways, mitochondrial metabolism, and ion channels that play a pivotal role in controlling cardiac contractility are common targets of Zn(2+). However, these regulatory actions of Zn(2+) are not limited to the function of the heart, but also extend to numerous other organ systems, such as the central nervous system, immune system, cardiovascular tissue, and secretory glands, such as the pancreas, prostate, and mammary glands. In this review, the regulation of cellular Zn(2+) levels, Zn(2+)-mediated signal transduction, impacts of Zn(2+) on ion channels and mitochondrial metabolism, and finally, the implications of Zn(2+) in health and disease development were outlined to help widen the current understanding of the versatile and complex roles of Zn(2+).
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spelling pubmed-45533982015-09-01 The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling Lee, Sung Ryul Noh, Su Jin Pronto, Julius Ryan Jeong, Yu Jeong Kim, Hyoung Kyu Song, In Sung Xu, Zhelong Kwon, Hyog Young Kang, Se Chan Sohn, Eun-Hwa Ko, Kyung Soo Rhee, Byoung Doo Kim, Nari Han, Jin Korean J Physiol Pharmacol Review Article Zinc has been considered as a vital constituent of proteins, including enzymes. Mobile reactive zinc (Zn(2+)) is the key form of zinc involved in signal transductions, which are mainly driven by its binding to proteins or the release of zinc from proteins, possibly via a redox switch. There has been growing evidence of zinc's critical role in cell signaling, due to its flexible coordination geometry and rapid shifts in protein conformation to perform biological reactions. The importance and complexity of Zn(2+) activity has been presumed to parallel the degree of calcium's participation in cellular processes. Whole body and cellular Zn(2+) levels are largely regulated by metallothioneins (MTs), Zn(2+) importers (ZIPs), and Zn(2+) transporters (ZnTs). Numerous proteins involved in signaling pathways, mitochondrial metabolism, and ion channels that play a pivotal role in controlling cardiac contractility are common targets of Zn(2+). However, these regulatory actions of Zn(2+) are not limited to the function of the heart, but also extend to numerous other organ systems, such as the central nervous system, immune system, cardiovascular tissue, and secretory glands, such as the pancreas, prostate, and mammary glands. In this review, the regulation of cellular Zn(2+) levels, Zn(2+)-mediated signal transduction, impacts of Zn(2+) on ion channels and mitochondrial metabolism, and finally, the implications of Zn(2+) in health and disease development were outlined to help widen the current understanding of the versatile and complex roles of Zn(2+). The Korean Physiological Society and The Korean Society of Pharmacology 2015-09 2015-08-20 /pmc/articles/PMC4553398/ /pubmed/26330751 http://dx.doi.org/10.4196/kjpp.2015.19.5.389 Text en Copyright © Korean J Physiol Pharmacol http://creativecommons.org/licenses/by-nc/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review Article
Lee, Sung Ryul
Noh, Su Jin
Pronto, Julius Ryan
Jeong, Yu Jeong
Kim, Hyoung Kyu
Song, In Sung
Xu, Zhelong
Kwon, Hyog Young
Kang, Se Chan
Sohn, Eun-Hwa
Ko, Kyung Soo
Rhee, Byoung Doo
Kim, Nari
Han, Jin
The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title_full The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title_fullStr The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title_full_unstemmed The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title_short The Critical Roles of Zinc: Beyond Impact on Myocardial Signaling
title_sort critical roles of zinc: beyond impact on myocardial signaling
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4553398/
https://www.ncbi.nlm.nih.gov/pubmed/26330751
http://dx.doi.org/10.4196/kjpp.2015.19.5.389
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