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MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G

Smooth muscle relaxation in response to NO signaling is due, in part, to a Ca(2+)-independent activation of myosin light chain (MLC) phosphatase by protein kinase G Iα (PKGIα). MLC phosphatase is a trimeric complex of a 20-kDa subunit, a 38-kDa catalytic subunit, and a 110–133-kDa myosin-targeting s...

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Autores principales: Yuen, Samantha, Ogut, Ozgur, Brozovich, Frank V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3199474/
https://www.ncbi.nlm.nih.gov/pubmed/21890627
http://dx.doi.org/10.1074/jbc.M111.282905
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author Yuen, Samantha
Ogut, Ozgur
Brozovich, Frank V.
author_facet Yuen, Samantha
Ogut, Ozgur
Brozovich, Frank V.
author_sort Yuen, Samantha
collection PubMed
description Smooth muscle relaxation in response to NO signaling is due, in part, to a Ca(2+)-independent activation of myosin light chain (MLC) phosphatase by protein kinase G Iα (PKGIα). MLC phosphatase is a trimeric complex of a 20-kDa subunit, a 38-kDa catalytic subunit, and a 110–133-kDa myosin-targeting subunit (MYPT1). Alternative mRNA splicing produces four MYPT1 isoforms, differing by the presence or absence of a central insert and leucine zipper (LZ). The LZ domain of MYPT1 has been shown to be important for PKGIα-mediated activation of MLC phosphatase activity, and changes in LZ+ MYPT1 isoform expression result in changes in the sensitivity of smooth muscle to NO-mediated relaxation. Furthermore, PKGIα has been demonstrated to phosphorylate Ser-694 of MYPT1, but phosphorylation at this site does not always accompany cGMP-mediated smooth muscle relaxation. This study was designed to determine whether MYPT1 isoforms are differentially phosphorylated by PKGIα. The results demonstrate that purified LZ+ MYPT1 fragments are rapidly phosphorylated by PKGIα at Ser-667 and Ser-694, whereas fragments lacking the LZ domain are poor PKGIα substrates. Mutation of Ser-667 and Ser-694 to Ala and/or Asp showed that Ser-667 phosphorylation is more rapid than Ser-694 phosphorylation, suggesting that Ser-667 may play an important role in the activation of MLC phosphatase. These results demonstrate that MYPT1 isoform expression is important for determining the heterogeneous response of vascular beds to NO and NO-based vasodilators, thereby playing a central role in the regulation of vascular tone in health and disease.
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spelling pubmed-31994742011-11-01 MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G Yuen, Samantha Ogut, Ozgur Brozovich, Frank V. J Biol Chem Signal Transduction Smooth muscle relaxation in response to NO signaling is due, in part, to a Ca(2+)-independent activation of myosin light chain (MLC) phosphatase by protein kinase G Iα (PKGIα). MLC phosphatase is a trimeric complex of a 20-kDa subunit, a 38-kDa catalytic subunit, and a 110–133-kDa myosin-targeting subunit (MYPT1). Alternative mRNA splicing produces four MYPT1 isoforms, differing by the presence or absence of a central insert and leucine zipper (LZ). The LZ domain of MYPT1 has been shown to be important for PKGIα-mediated activation of MLC phosphatase activity, and changes in LZ+ MYPT1 isoform expression result in changes in the sensitivity of smooth muscle to NO-mediated relaxation. Furthermore, PKGIα has been demonstrated to phosphorylate Ser-694 of MYPT1, but phosphorylation at this site does not always accompany cGMP-mediated smooth muscle relaxation. This study was designed to determine whether MYPT1 isoforms are differentially phosphorylated by PKGIα. The results demonstrate that purified LZ+ MYPT1 fragments are rapidly phosphorylated by PKGIα at Ser-667 and Ser-694, whereas fragments lacking the LZ domain are poor PKGIα substrates. Mutation of Ser-667 and Ser-694 to Ala and/or Asp showed that Ser-667 phosphorylation is more rapid than Ser-694 phosphorylation, suggesting that Ser-667 may play an important role in the activation of MLC phosphatase. These results demonstrate that MYPT1 isoform expression is important for determining the heterogeneous response of vascular beds to NO and NO-based vasodilators, thereby playing a central role in the regulation of vascular tone in health and disease. American Society for Biochemistry and Molecular Biology 2011-10-28 2011-09-02 /pmc/articles/PMC3199474/ /pubmed/21890627 http://dx.doi.org/10.1074/jbc.M111.282905 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Signal Transduction
Yuen, Samantha
Ogut, Ozgur
Brozovich, Frank V.
MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title_full MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title_fullStr MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title_full_unstemmed MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title_short MYPT1 Protein Isoforms Are Differentially Phosphorylated by Protein Kinase G
title_sort mypt1 protein isoforms are differentially phosphorylated by protein kinase g
topic Signal Transduction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3199474/
https://www.ncbi.nlm.nih.gov/pubmed/21890627
http://dx.doi.org/10.1074/jbc.M111.282905
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