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Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies

We describe here a novel sarcomeric 145-kD protein, myopalladin, which tethers together the COOH-terminal Src homology 3 domains of nebulin and nebulette with the EF hand motifs of α-actinin in vertebrate Z-lines. Myopalladin's nebulin/nebulette and α-actinin–binding sites are contained in two...

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Autores principales: Bang, Marie-Louise, Mudry, Ryan E., McElhinny, Abigail S., Trombitás, Karoly, Geach, Adam J., Yamasaki, Rob, Sorimachi, Hiroyuki, Granzier, Henk, Gregorio, Carol C., Labeit, Siegfried
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2169455/
https://www.ncbi.nlm.nih.gov/pubmed/11309420
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author Bang, Marie-Louise
Mudry, Ryan E.
McElhinny, Abigail S.
Trombitás, Karoly
Geach, Adam J.
Yamasaki, Rob
Sorimachi, Hiroyuki
Granzier, Henk
Gregorio, Carol C.
Labeit, Siegfried
author_facet Bang, Marie-Louise
Mudry, Ryan E.
McElhinny, Abigail S.
Trombitás, Karoly
Geach, Adam J.
Yamasaki, Rob
Sorimachi, Hiroyuki
Granzier, Henk
Gregorio, Carol C.
Labeit, Siegfried
author_sort Bang, Marie-Louise
collection PubMed
description We describe here a novel sarcomeric 145-kD protein, myopalladin, which tethers together the COOH-terminal Src homology 3 domains of nebulin and nebulette with the EF hand motifs of α-actinin in vertebrate Z-lines. Myopalladin's nebulin/nebulette and α-actinin–binding sites are contained in two distinct regions within its COOH-terminal 90-kD domain. Both sites are highly homologous with those found in palladin, a protein described recently required for actin cytoskeletal assembly (Parast, M.M., and C.A. Otey. 2000. J. Cell Biol. 150:643–656). This suggests that palladin and myopalladin may have conserved roles in stress fiber and Z-line assembly. The NH(2)-terminal region of myopalladin specifically binds to the cardiac ankyrin repeat protein (CARP), a nuclear protein involved in control of muscle gene expression. Immunofluorescence and immunoelectron microscopy studies revealed that myopalladin also colocalized with CARP in the central I-band of striated muscle sarcomeres. Overexpression of myopalladin's NH(2)-terminal CARP-binding region in live cardiac myocytes resulted in severe disruption of all sarcomeric components studied, suggesting that the myopalladin–CARP complex in the central I-band may have an important regulatory role in maintaining sarcomeric integrity. Our data also suggest that myopalladin may link regulatory mechanisms involved in Z-line structure (via α-actinin and nebulin/nebulette) to those involved in muscle gene expression (via CARP).
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spelling pubmed-21694552008-05-01 Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies Bang, Marie-Louise Mudry, Ryan E. McElhinny, Abigail S. Trombitás, Karoly Geach, Adam J. Yamasaki, Rob Sorimachi, Hiroyuki Granzier, Henk Gregorio, Carol C. Labeit, Siegfried J Cell Biol Original Article We describe here a novel sarcomeric 145-kD protein, myopalladin, which tethers together the COOH-terminal Src homology 3 domains of nebulin and nebulette with the EF hand motifs of α-actinin in vertebrate Z-lines. Myopalladin's nebulin/nebulette and α-actinin–binding sites are contained in two distinct regions within its COOH-terminal 90-kD domain. Both sites are highly homologous with those found in palladin, a protein described recently required for actin cytoskeletal assembly (Parast, M.M., and C.A. Otey. 2000. J. Cell Biol. 150:643–656). This suggests that palladin and myopalladin may have conserved roles in stress fiber and Z-line assembly. The NH(2)-terminal region of myopalladin specifically binds to the cardiac ankyrin repeat protein (CARP), a nuclear protein involved in control of muscle gene expression. Immunofluorescence and immunoelectron microscopy studies revealed that myopalladin also colocalized with CARP in the central I-band of striated muscle sarcomeres. Overexpression of myopalladin's NH(2)-terminal CARP-binding region in live cardiac myocytes resulted in severe disruption of all sarcomeric components studied, suggesting that the myopalladin–CARP complex in the central I-band may have an important regulatory role in maintaining sarcomeric integrity. Our data also suggest that myopalladin may link regulatory mechanisms involved in Z-line structure (via α-actinin and nebulin/nebulette) to those involved in muscle gene expression (via CARP). The Rockefeller University Press 2001-04-16 /pmc/articles/PMC2169455/ /pubmed/11309420 Text en © 2001 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Bang, Marie-Louise
Mudry, Ryan E.
McElhinny, Abigail S.
Trombitás, Karoly
Geach, Adam J.
Yamasaki, Rob
Sorimachi, Hiroyuki
Granzier, Henk
Gregorio, Carol C.
Labeit, Siegfried
Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title_full Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title_fullStr Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title_full_unstemmed Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title_short Myopalladin, a Novel 145-Kilodalton Sarcomeric Protein with Multiple Roles in Z-Disc and I-Band Protein Assemblies
title_sort myopalladin, a novel 145-kilodalton sarcomeric protein with multiple roles in z-disc and i-band protein assemblies
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2169455/
https://www.ncbi.nlm.nih.gov/pubmed/11309420
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