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Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)

Four-and-a-half LIM domain protein 1 isoform A (FHL1A) is predominantly expressed in skeletal and cardiac muscle. Mutations in the FHL1 gene are causative for several types of hereditary myopathies including X-linked myopathy with postural muscle atrophy (XMPMA). We here studied myoblasts from XMPMA...

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Autores principales: Poparic, Ivana, Schreibmayer, Wolfgang, Schoser, Benedikt, Desoye, Gernot, Gorischek, Astrid, Miedl, Heidi, Hochmeister, Sonja, Binder, Josepha, Quasthoff, Stefan, Wagner, Klaus, Windpassinger, Christian, Malle, Ernst
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3203871/
https://www.ncbi.nlm.nih.gov/pubmed/22053194
http://dx.doi.org/10.1371/journal.pone.0026524
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author Poparic, Ivana
Schreibmayer, Wolfgang
Schoser, Benedikt
Desoye, Gernot
Gorischek, Astrid
Miedl, Heidi
Hochmeister, Sonja
Binder, Josepha
Quasthoff, Stefan
Wagner, Klaus
Windpassinger, Christian
Malle, Ernst
author_facet Poparic, Ivana
Schreibmayer, Wolfgang
Schoser, Benedikt
Desoye, Gernot
Gorischek, Astrid
Miedl, Heidi
Hochmeister, Sonja
Binder, Josepha
Quasthoff, Stefan
Wagner, Klaus
Windpassinger, Christian
Malle, Ernst
author_sort Poparic, Ivana
collection PubMed
description Four-and-a-half LIM domain protein 1 isoform A (FHL1A) is predominantly expressed in skeletal and cardiac muscle. Mutations in the FHL1 gene are causative for several types of hereditary myopathies including X-linked myopathy with postural muscle atrophy (XMPMA). We here studied myoblasts from XMPMA patients. We found that functional FHL1A protein is completely absent in patient myoblasts. In parallel, expression of FHL1C is either unaffected or increased. Furthermore, a decreased proliferation rate of XMPMA myoblasts compared to controls was observed but an increased number of XMPMA myoblasts was found in the G(0)/G(1) phase. Furthermore, low expression of K(v1.5), a voltage-gated potassium channel known to alter myoblast proliferation during the G(1) phase and to control repolarization of action potential, was detected. In order to substantiate a possible relation between K(v1.5) and FHL1C, a pull-down assay was performed. A physical and direct interaction of both proteins was observed in vitro. In addition, confocal microscopy revealed substantial colocalization of FHL1C and K(v1.5) within atrial cells, supporting a possible interaction between both proteins in vivo. Two-electrode voltage clamp experiments demonstrated that coexpression of K(v1.5) with FHL1C in Xenopus laevis oocytes markedly reduced K(+) currents when compared to oocytes expressing K(v1.5) only. We here present the first evidence on a biological relevance of FHL1C.
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spelling pubmed-32038712011-11-03 Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5) Poparic, Ivana Schreibmayer, Wolfgang Schoser, Benedikt Desoye, Gernot Gorischek, Astrid Miedl, Heidi Hochmeister, Sonja Binder, Josepha Quasthoff, Stefan Wagner, Klaus Windpassinger, Christian Malle, Ernst PLoS One Research Article Four-and-a-half LIM domain protein 1 isoform A (FHL1A) is predominantly expressed in skeletal and cardiac muscle. Mutations in the FHL1 gene are causative for several types of hereditary myopathies including X-linked myopathy with postural muscle atrophy (XMPMA). We here studied myoblasts from XMPMA patients. We found that functional FHL1A protein is completely absent in patient myoblasts. In parallel, expression of FHL1C is either unaffected or increased. Furthermore, a decreased proliferation rate of XMPMA myoblasts compared to controls was observed but an increased number of XMPMA myoblasts was found in the G(0)/G(1) phase. Furthermore, low expression of K(v1.5), a voltage-gated potassium channel known to alter myoblast proliferation during the G(1) phase and to control repolarization of action potential, was detected. In order to substantiate a possible relation between K(v1.5) and FHL1C, a pull-down assay was performed. A physical and direct interaction of both proteins was observed in vitro. In addition, confocal microscopy revealed substantial colocalization of FHL1C and K(v1.5) within atrial cells, supporting a possible interaction between both proteins in vivo. Two-electrode voltage clamp experiments demonstrated that coexpression of K(v1.5) with FHL1C in Xenopus laevis oocytes markedly reduced K(+) currents when compared to oocytes expressing K(v1.5) only. We here present the first evidence on a biological relevance of FHL1C. Public Library of Science 2011-10-28 /pmc/articles/PMC3203871/ /pubmed/22053194 http://dx.doi.org/10.1371/journal.pone.0026524 Text en Poparic et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Poparic, Ivana
Schreibmayer, Wolfgang
Schoser, Benedikt
Desoye, Gernot
Gorischek, Astrid
Miedl, Heidi
Hochmeister, Sonja
Binder, Josepha
Quasthoff, Stefan
Wagner, Klaus
Windpassinger, Christian
Malle, Ernst
Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title_full Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title_fullStr Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title_full_unstemmed Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title_short Four and a Half LIM Protein 1C (FHL1C): A Binding Partner for Voltage-Gated Potassium Channel K(v1.5)
title_sort four and a half lim protein 1c (fhl1c): a binding partner for voltage-gated potassium channel k(v1.5)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3203871/
https://www.ncbi.nlm.nih.gov/pubmed/22053194
http://dx.doi.org/10.1371/journal.pone.0026524
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