Calcineurin signaling and NFAT activation in cardiovascular and skeletal muscle development

Calcineurin signaling has been implicated in a broad spectrum of developmental processes in a variety of organ systems. Calcineurin is a calmodulin-dependent, calcium-activated protein phosphatase composed of catalytic and regulatory subunits. The serine/threonine-specific phosphatase functions with...

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Published inDevelopmental Biology Vol. 266; no. 1; pp. 1 - 16
Main Authors Schulz, Robert A, Yutzey, Katherine E
Format Book Review Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.02.2004
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Abstract Calcineurin signaling has been implicated in a broad spectrum of developmental processes in a variety of organ systems. Calcineurin is a calmodulin-dependent, calcium-activated protein phosphatase composed of catalytic and regulatory subunits. The serine/threonine-specific phosphatase functions within a signal transduction pathway that regulates gene expression and biological responses in many developmentally important cell types. Calcineurin signaling was first defined in T lymphocytes as a regulator of nuclear factor of activated T cells (NFAT) transcription factor nuclear translocation and activation. Recent studies have demonstrated the vital nature of calcium/calcineurin/NFAT signaling in cardiovascular and skeletal muscle development in vertebrates. Inhibition, mutation, or forced expression of calcineurin pathway genes result in defects or alterations in cardiomyocyte maturation, heart valve formation, vascular development, skeletal muscle differentiation and fiber-type switching, and cardiac and skeletal muscle hypertrophy. Conserved calcineurin genes are found in invertebrates such as Drosophila and Caenorhabditis elegans, and genetic studies have demonstrated specific myogenic functions for the phosphatase in their development. The ability to investigate calcineurin signaling pathways in vertebrates and model genetic organisms provides a great potential to more fully comprehend the functions of calcineurin and its interacting genes in heart, blood vessel, and muscle development.
AbstractList Calcineurin signaling has been implicated in a broad spectrum of developmental processes in a variety of organ systems. Calcineurin is a calmodulin-dependent, calcium-activated protein phosphatase composed of catalytic and regulatory subunits. The serine/threonine-specific phosphatase functions within a signal transduction pathway that regulates gene expression and biological responses in many developmentally important cell types. Calcineurin signaling was first defined in T lymphocytes as a regulator of nuclear factor of activated T cells (NFAT) transcription factor nuclear translocation and activation. Recent studies have demonstrated the vital nature of calcium/calcineurin/NFAT signaling in cardiovascular and skeletal muscle development in vertebrates. Inhibition, mutation, or forced expression of calcineurin pathway genes result in defects or alterations in cardiomyocyte maturation, heart valve formation, vascular development, skeletal muscle differentiation and fiber-type switching, and cardiac and skeletal muscle hypertrophy. Conserved calcineurin genes are found in invertebrates such as Drosophila and Caenorhabditis elegans, and genetic studies have demonstrated specific myogenic functions for the phosphatase in their development. The ability to investigate calcineurin signaling pathways in vertebrates and model genetic organisms provides a great potential to more fully comprehend the functions of calcineurin and its interacting genes in heart, blood vessel, and muscle development.
Calcineurin signaling has been implicated in a broad spectrum of developmental processes in a variety of organ systems. Calcineurin is a calmodulin-dependent, calcium-activated protein phosphatase composed of catalytic and regulatory subunits. The serine/threonine-specific phosphatase functions within a signal transduction pathway that regulates gene expression and biological responses in many developmentally important cell types. Calcineurin signaling was first defined in T lymphocytes as a regulator of nuclear factor of activated T cells (NFAT) transcription factor nuclear translocation and activation. Recent studies have demonstrated the vital nature of calcium/calcineurin/NFAT signaling in cardiovascular and skeletal muscle development in vertebrates. Inhibition, mutation, or forced expression of calcineurin pathway genes result in defects or alterations in cardiomyocyte maturation, heart valve formation, vascular development, skeletal muscle differentiation and fiber-type switching, and cardiac and skeletal muscle hypertrophy. Conserved calcineurin genes are found in invertebrates such as Drosophila and Caenorhabditis elegans, and genetic studies have demonstrated specific myogenic functions for the phosphatase in their development. The ability to investigate calcineurin signaling pathways in vertebrates and model genetic organisms provides a great potential to more fully comprehend the functions of calcineurin and its interacting genes in heart, blood vessel, and muscle development.
Author Yutzey, Katherine E
Schulz, Robert A
Author_xml – sequence: 1
  givenname: Robert A
  surname: Schulz
  fullname: Schulz, Robert A
  email: raschulz@mdanderson.org
  organization: Department of Biochemistry and Molecular Biology, Graduate Program in Genes and Development, The University of Texas M.D. Anderson Cancer Center, Houston, TX 77030, USA
– sequence: 2
  givenname: Katherine E
  surname: Yutzey
  fullname: Yutzey, Katherine E
  organization: Division of Molecular Cardiovascular Biology, Children's Hospital Medical Center, Cincinnati, OH 45229, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/14729474$$D View this record in MEDLINE/PubMed
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Calcium & Calcified Tissue Abstracts
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ISSN 0012-1606
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Sat Sep 28 08:37:02 EDT 2024
Fri Feb 23 02:16:58 EST 2024
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Issue 1
Keywords C. elegans
Calcineurin
Valvuloseptal development
Drosophila
Vascular development
Indirect flight muscle
Skeletal muscle
NFAT
Signal transduction
Cardiomyocyte
Interacting genes
Fiber-type specialization
Hypertrophy
Language English
License http://www.elsevier.com/open-access/userlicense/1.0
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pubmed_primary_14729474
elsevier_sciencedirect_doi_10_1016_j_ydbio_2003_10_008
PublicationCentury 2000
PublicationDate 2004-02-01
PublicationDateYYYYMMDD 2004-02-01
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  year: 2004
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  day: 01
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PublicationPlace United States
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PublicationTitle Developmental Biology
PublicationTitleAlternate Dev Biol
PublicationYear 2004
Publisher Elsevier Inc
Publisher_xml – name: Elsevier Inc
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Snippet Calcineurin signaling has been implicated in a broad spectrum of developmental processes in a variety of organ systems. Calcineurin is a calmodulin-dependent,...
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SubjectTerms Animals
C. elegans
Caenorhabditis elegans
Calcineurin
Calcineurin - metabolism
Cardiomyocyte
Cardiovascular System - cytology
Cardiovascular System - growth & development
Cell Differentiation
DNA-Binding Proteins - metabolism
Drosophila
Fiber-type specialization
Humans
Hypertrophy
Indirect flight muscle
Interacting genes
Muscle, Skeletal - cytology
Muscle, Skeletal - growth & development
NFAT
NFATC Transcription Factors
Nuclear Proteins
Signal Transduction
Skeletal muscle
Transcription Factors - metabolism
Valvuloseptal development
Vascular development
Title Calcineurin signaling and NFAT activation in cardiovascular and skeletal muscle development
URI https://dx.doi.org/10.1016/j.ydbio.2003.10.008
https://www.ncbi.nlm.nih.gov/pubmed/14729474
https://search.proquest.com/docview/19264605
https://search.proquest.com/docview/80101534
Volume 266
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