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WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function

AIMS: In a recent genome-wide association study, WD-repeat domain 12 (WDR12) was associated with early-onset myocardial infarction (MI). However, the function of WDR12 in the heart is unknown. METHODS AND RESULTS: We characterized cardiac expression of WDR12, used adenovirus-mediated WDR12 gene deli...

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Autores principales: Moilanen, Anne-Mari, Rysä, Jaana, Kaikkonen, Leena, Karvonen, Teemu, Mustonen, Erja, Serpi, Raisa, Szabó, Zoltán, Tenhunen, Olli, Bagyura, Zsolt, Näpänkangas, Juha, Ohukainen, Pauli, Tavi, Pasi, Kerkelä, Risto, Leósdóttir, Margrét, Wahlstrand, Björn, Hedner, Thomas, Melander, Olle, Ruskoaho, Heikki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4411154/
https://www.ncbi.nlm.nih.gov/pubmed/25915632
http://dx.doi.org/10.1371/journal.pone.0124907
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author Moilanen, Anne-Mari
Rysä, Jaana
Kaikkonen, Leena
Karvonen, Teemu
Mustonen, Erja
Serpi, Raisa
Szabó, Zoltán
Tenhunen, Olli
Bagyura, Zsolt
Näpänkangas, Juha
Ohukainen, Pauli
Tavi, Pasi
Kerkelä, Risto
Leósdóttir, Margrét
Wahlstrand, Björn
Hedner, Thomas
Melander, Olle
Ruskoaho, Heikki
author_facet Moilanen, Anne-Mari
Rysä, Jaana
Kaikkonen, Leena
Karvonen, Teemu
Mustonen, Erja
Serpi, Raisa
Szabó, Zoltán
Tenhunen, Olli
Bagyura, Zsolt
Näpänkangas, Juha
Ohukainen, Pauli
Tavi, Pasi
Kerkelä, Risto
Leósdóttir, Margrét
Wahlstrand, Björn
Hedner, Thomas
Melander, Olle
Ruskoaho, Heikki
author_sort Moilanen, Anne-Mari
collection PubMed
description AIMS: In a recent genome-wide association study, WD-repeat domain 12 (WDR12) was associated with early-onset myocardial infarction (MI). However, the function of WDR12 in the heart is unknown. METHODS AND RESULTS: We characterized cardiac expression of WDR12, used adenovirus-mediated WDR12 gene delivery to examine effects of WDR12 on left ventricular (LV) remodeling, and analyzed relationship between MI associated WDR12 allele and cardiac function in human subjects. LV WDR12 protein levels were increased in patients with dilated cardiomyopathy and rats post-infarction. In normal adult rat hearts, WDR12 gene delivery into the anterior wall of the LV decreased interventricular septum diastolic and systolic thickness and increased the diastolic and systolic diameters of the LV. Moreover, LV ejection fraction (9.1%, P<0.05) and fractional shortening (12.2%, P<0.05) were declined. The adverse effects of WDR12 gene delivery on cardiac function were associated with decreased cellular proliferation, activation of p38 mitogen–activated protein kinase (MAPK)/heat shock protein (HSP) 27 pathway, and increased protein levels of Block of proliferation 1 (BOP1), essential for ribosome biogenesis. Post-infarction WDR12 gene delivery decreased E/A ratio (32%, P<0.05) suggesting worsening of diastolic function. In human subjects, MI associated WDR12 allele was associated significantly with diastolic dysfunction and left atrial size. CONCLUSIONS: WDR12 triggers distinct deterioration of cardiac function in adult rat heart and the MI associated WDR12 variant is associated with diastolic dysfunction in human subjects.
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spelling pubmed-44111542015-05-07 WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function Moilanen, Anne-Mari Rysä, Jaana Kaikkonen, Leena Karvonen, Teemu Mustonen, Erja Serpi, Raisa Szabó, Zoltán Tenhunen, Olli Bagyura, Zsolt Näpänkangas, Juha Ohukainen, Pauli Tavi, Pasi Kerkelä, Risto Leósdóttir, Margrét Wahlstrand, Björn Hedner, Thomas Melander, Olle Ruskoaho, Heikki PLoS One Research Article AIMS: In a recent genome-wide association study, WD-repeat domain 12 (WDR12) was associated with early-onset myocardial infarction (MI). However, the function of WDR12 in the heart is unknown. METHODS AND RESULTS: We characterized cardiac expression of WDR12, used adenovirus-mediated WDR12 gene delivery to examine effects of WDR12 on left ventricular (LV) remodeling, and analyzed relationship between MI associated WDR12 allele and cardiac function in human subjects. LV WDR12 protein levels were increased in patients with dilated cardiomyopathy and rats post-infarction. In normal adult rat hearts, WDR12 gene delivery into the anterior wall of the LV decreased interventricular septum diastolic and systolic thickness and increased the diastolic and systolic diameters of the LV. Moreover, LV ejection fraction (9.1%, P<0.05) and fractional shortening (12.2%, P<0.05) were declined. The adverse effects of WDR12 gene delivery on cardiac function were associated with decreased cellular proliferation, activation of p38 mitogen–activated protein kinase (MAPK)/heat shock protein (HSP) 27 pathway, and increased protein levels of Block of proliferation 1 (BOP1), essential for ribosome biogenesis. Post-infarction WDR12 gene delivery decreased E/A ratio (32%, P<0.05) suggesting worsening of diastolic function. In human subjects, MI associated WDR12 allele was associated significantly with diastolic dysfunction and left atrial size. CONCLUSIONS: WDR12 triggers distinct deterioration of cardiac function in adult rat heart and the MI associated WDR12 variant is associated with diastolic dysfunction in human subjects. Public Library of Science 2015-04-27 /pmc/articles/PMC4411154/ /pubmed/25915632 http://dx.doi.org/10.1371/journal.pone.0124907 Text en © 2015 Moilanen 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
Moilanen, Anne-Mari
Rysä, Jaana
Kaikkonen, Leena
Karvonen, Teemu
Mustonen, Erja
Serpi, Raisa
Szabó, Zoltán
Tenhunen, Olli
Bagyura, Zsolt
Näpänkangas, Juha
Ohukainen, Pauli
Tavi, Pasi
Kerkelä, Risto
Leósdóttir, Margrét
Wahlstrand, Björn
Hedner, Thomas
Melander, Olle
Ruskoaho, Heikki
WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title_full WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title_fullStr WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title_full_unstemmed WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title_short WDR12, a Member of Nucleolar PeBoW-Complex, Is Up-Regulated in Failing Hearts and Causes Deterioration of Cardiac Function
title_sort wdr12, a member of nucleolar pebow-complex, is up-regulated in failing hearts and causes deterioration of cardiac function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4411154/
https://www.ncbi.nlm.nih.gov/pubmed/25915632
http://dx.doi.org/10.1371/journal.pone.0124907
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