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The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells

P2 receptors are membrane-bound receptors for extracellular nucleotides such as ATP and UTP. P2 receptors have been classified as ligand-gated ion channels or P2X receptors and G protein-coupled P2Y receptors. Recently, purinergic signaling has begun to attract attention as a potential therapeutic t...

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Autores principales: Kwon, Tae Hoon, Jung, Hyunwoo, Cho, Eun Jeong, Jeong, Ji Hoon, Sohn, Uy Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Molecular and Cellular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4507027/
https://www.ncbi.nlm.nih.gov/pubmed/26013385
http://dx.doi.org/10.14348/molcells.2015.2357
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author Kwon, Tae Hoon
Jung, Hyunwoo
Cho, Eun Jeong
Jeong, Ji Hoon
Sohn, Uy Dong
author_facet Kwon, Tae Hoon
Jung, Hyunwoo
Cho, Eun Jeong
Jeong, Ji Hoon
Sohn, Uy Dong
author_sort Kwon, Tae Hoon
collection PubMed
description P2 receptors are membrane-bound receptors for extracellular nucleotides such as ATP and UTP. P2 receptors have been classified as ligand-gated ion channels or P2X receptors and G protein-coupled P2Y receptors. Recently, purinergic signaling has begun to attract attention as a potential therapeutic target for a variety of diseases especially associated with gastroenterology. This study determined the ATP and UTP-induced receptor signaling mechanism in feline esophageal contraction. Contraction of dispersed feline esophageal smooth muscle cells was measured by scanning micrometry. Phosphorylation of MLC(20) was determined by western blot analysis. ATP and UTP elicited maximum esophageal contraction at 30 s and 10 μM concentration. Contraction of dispersed cells treated with 10 μM ATP was inhibited by nifedipine. However, contraction induced by 0.1 μM ATP, 0.1 μM UTP and 10 μM UTP was decreased by U73122, chelerythrine, ML-9, PTX and GDPβS. Contraction induced by 0.1 μM ATP and UTP was inhibited by Gαi(3) or Gαq antibodies and by PLCβ(1) or PLCβ(3) antibodies. Phosphorylated MLC(20) was increased by ATP and UTP treatment. In conclusion, esophageal contraction induced by ATP and UTP was preferentially mediated by P2Y receptors coupled to Gαi(3) and G q proteins, which activate PLCβ(1) and PLCβ(3). Subsequently, increased intracellular Ca(2+) and activated PKC triggered stimulation of MLC kinase and inhibition of MLC phosphatase. Finally, increased pMLC(20) generated esophageal contraction.
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spelling pubmed-45070272015-07-24 The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells Kwon, Tae Hoon Jung, Hyunwoo Cho, Eun Jeong Jeong, Ji Hoon Sohn, Uy Dong Mol Cells Article P2 receptors are membrane-bound receptors for extracellular nucleotides such as ATP and UTP. P2 receptors have been classified as ligand-gated ion channels or P2X receptors and G protein-coupled P2Y receptors. Recently, purinergic signaling has begun to attract attention as a potential therapeutic target for a variety of diseases especially associated with gastroenterology. This study determined the ATP and UTP-induced receptor signaling mechanism in feline esophageal contraction. Contraction of dispersed feline esophageal smooth muscle cells was measured by scanning micrometry. Phosphorylation of MLC(20) was determined by western blot analysis. ATP and UTP elicited maximum esophageal contraction at 30 s and 10 μM concentration. Contraction of dispersed cells treated with 10 μM ATP was inhibited by nifedipine. However, contraction induced by 0.1 μM ATP, 0.1 μM UTP and 10 μM UTP was decreased by U73122, chelerythrine, ML-9, PTX and GDPβS. Contraction induced by 0.1 μM ATP and UTP was inhibited by Gαi(3) or Gαq antibodies and by PLCβ(1) or PLCβ(3) antibodies. Phosphorylated MLC(20) was increased by ATP and UTP treatment. In conclusion, esophageal contraction induced by ATP and UTP was preferentially mediated by P2Y receptors coupled to Gαi(3) and G q proteins, which activate PLCβ(1) and PLCβ(3). Subsequently, increased intracellular Ca(2+) and activated PKC triggered stimulation of MLC kinase and inhibition of MLC phosphatase. Finally, increased pMLC(20) generated esophageal contraction. Korean Society for Molecular and Cellular Biology 2015-07-31 2015-05-27 /pmc/articles/PMC4507027/ /pubmed/26013385 http://dx.doi.org/10.14348/molcells.2015.2357 Text en © The Korean Society for Molecular and Cellular Biology. All rights reserved. This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/.
spellingShingle Article
Kwon, Tae Hoon
Jung, Hyunwoo
Cho, Eun Jeong
Jeong, Ji Hoon
Sohn, Uy Dong
The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title_full The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title_fullStr The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title_full_unstemmed The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title_short The Signaling Mechanism of Contraction Induced by ATP and UTP in Feline Esophageal Smooth Muscle Cells
title_sort signaling mechanism of contraction induced by atp and utp in feline esophageal smooth muscle cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4507027/
https://www.ncbi.nlm.nih.gov/pubmed/26013385
http://dx.doi.org/10.14348/molcells.2015.2357
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