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Ninjurin1 regulates striated muscle growth and differentiation

Chronic pressure overload due to aortic valve stenosis leads to pathological cardiac hypertrophy and heart failure. Hypertrophy is accompanied by an increase in myocyte surface area, which requires a proportional increase in the number of cell-cell and cell-matrix contacts to withstand enhanced work...

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Autores principales: Kny, Melanie, Csályi, Kitti D., Klaeske, Kristin, Busch, Katharina, Meyer, Alexander M., Merks, Anne M., Darm, Katrin, Dworatzek, Elke, Fliegner, Daniela, Baczko, Istvan, Regitz-Zagrosek, Vera, Butter, Christian, Luft, Friedrich C., Panáková, Daniela, Fielitz, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6519837/
https://www.ncbi.nlm.nih.gov/pubmed/31091274
http://dx.doi.org/10.1371/journal.pone.0216987
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author Kny, Melanie
Csályi, Kitti D.
Klaeske, Kristin
Busch, Katharina
Meyer, Alexander M.
Merks, Anne M.
Darm, Katrin
Dworatzek, Elke
Fliegner, Daniela
Baczko, Istvan
Regitz-Zagrosek, Vera
Butter, Christian
Luft, Friedrich C.
Panáková, Daniela
Fielitz, Jens
author_facet Kny, Melanie
Csályi, Kitti D.
Klaeske, Kristin
Busch, Katharina
Meyer, Alexander M.
Merks, Anne M.
Darm, Katrin
Dworatzek, Elke
Fliegner, Daniela
Baczko, Istvan
Regitz-Zagrosek, Vera
Butter, Christian
Luft, Friedrich C.
Panáková, Daniela
Fielitz, Jens
author_sort Kny, Melanie
collection PubMed
description Chronic pressure overload due to aortic valve stenosis leads to pathological cardiac hypertrophy and heart failure. Hypertrophy is accompanied by an increase in myocyte surface area, which requires a proportional increase in the number of cell-cell and cell-matrix contacts to withstand enhanced workload. In a proteomic analysis we identified nerve injury-induced protein 1 (Ninjurin1), a 16kDa transmembrane cell-surface protein involved in cell adhesion and nerve repair, to be increased in hypertrophic hearts from patients with aortic stenosis. We hypothesised that Ninjurin1 is involved in myocyte hypertrophy. We analyzed cardiac biopsies from aortic-stenosis patients and control patients undergoing elective heart surgery. We studied cardiac hypertrophy in mice after transverse aortic constriction and angiotensin II infusions, and performed mechanistic analyses in cultured myocytes. We assessed the physiological role of ninjurin1 in zebrafish during heart and skeletal muscle development. Ninjurin1 was increased in hearts of aortic stenosis patients, compared to controls, as well as in hearts from mice with cardiac hypertrophy. Besides the 16kDa Ninjurin1 (Ninjurin1-16) we detected a 24kDa variant of Ninjurin1 (Ninjurin1-24), which was predominantly expressed during myocyte hypertrophy. We disclosed that the higher molecular weight of Ninjurin1-24 was caused by N-glycosylation. Ninjurin1-16 was contained in the cytoplasm of myocytes where it colocalized with stress-fibers. In contrast, Ninjurin1-24 was localized at myocyte membranes. Gain and loss-of-function experiments showed that Ninjurin1-24 plays a role in myocyte hypertrophy and myogenic differentiation in vitro. Reduced levels of ninjurin1 impaired cardiac and skeletal muscle development in zebrafish. We conclude that Ninjurin1 contributes to myocyte growth and differentiation, and that these effects are mainly mediated by N-glycosylated Ninjurin1-24.
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spelling pubmed-65198372019-05-31 Ninjurin1 regulates striated muscle growth and differentiation Kny, Melanie Csályi, Kitti D. Klaeske, Kristin Busch, Katharina Meyer, Alexander M. Merks, Anne M. Darm, Katrin Dworatzek, Elke Fliegner, Daniela Baczko, Istvan Regitz-Zagrosek, Vera Butter, Christian Luft, Friedrich C. Panáková, Daniela Fielitz, Jens PLoS One Research Article Chronic pressure overload due to aortic valve stenosis leads to pathological cardiac hypertrophy and heart failure. Hypertrophy is accompanied by an increase in myocyte surface area, which requires a proportional increase in the number of cell-cell and cell-matrix contacts to withstand enhanced workload. In a proteomic analysis we identified nerve injury-induced protein 1 (Ninjurin1), a 16kDa transmembrane cell-surface protein involved in cell adhesion and nerve repair, to be increased in hypertrophic hearts from patients with aortic stenosis. We hypothesised that Ninjurin1 is involved in myocyte hypertrophy. We analyzed cardiac biopsies from aortic-stenosis patients and control patients undergoing elective heart surgery. We studied cardiac hypertrophy in mice after transverse aortic constriction and angiotensin II infusions, and performed mechanistic analyses in cultured myocytes. We assessed the physiological role of ninjurin1 in zebrafish during heart and skeletal muscle development. Ninjurin1 was increased in hearts of aortic stenosis patients, compared to controls, as well as in hearts from mice with cardiac hypertrophy. Besides the 16kDa Ninjurin1 (Ninjurin1-16) we detected a 24kDa variant of Ninjurin1 (Ninjurin1-24), which was predominantly expressed during myocyte hypertrophy. We disclosed that the higher molecular weight of Ninjurin1-24 was caused by N-glycosylation. Ninjurin1-16 was contained in the cytoplasm of myocytes where it colocalized with stress-fibers. In contrast, Ninjurin1-24 was localized at myocyte membranes. Gain and loss-of-function experiments showed that Ninjurin1-24 plays a role in myocyte hypertrophy and myogenic differentiation in vitro. Reduced levels of ninjurin1 impaired cardiac and skeletal muscle development in zebrafish. We conclude that Ninjurin1 contributes to myocyte growth and differentiation, and that these effects are mainly mediated by N-glycosylated Ninjurin1-24. Public Library of Science 2019-05-15 /pmc/articles/PMC6519837/ /pubmed/31091274 http://dx.doi.org/10.1371/journal.pone.0216987 Text en © 2019 Kny 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kny, Melanie
Csályi, Kitti D.
Klaeske, Kristin
Busch, Katharina
Meyer, Alexander M.
Merks, Anne M.
Darm, Katrin
Dworatzek, Elke
Fliegner, Daniela
Baczko, Istvan
Regitz-Zagrosek, Vera
Butter, Christian
Luft, Friedrich C.
Panáková, Daniela
Fielitz, Jens
Ninjurin1 regulates striated muscle growth and differentiation
title Ninjurin1 regulates striated muscle growth and differentiation
title_full Ninjurin1 regulates striated muscle growth and differentiation
title_fullStr Ninjurin1 regulates striated muscle growth and differentiation
title_full_unstemmed Ninjurin1 regulates striated muscle growth and differentiation
title_short Ninjurin1 regulates striated muscle growth and differentiation
title_sort ninjurin1 regulates striated muscle growth and differentiation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6519837/
https://www.ncbi.nlm.nih.gov/pubmed/31091274
http://dx.doi.org/10.1371/journal.pone.0216987
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