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Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood

Heart attacks affect more than seven million people worldwide each year. A heart attack, or myocardial infarction, may result in the death of a billion cardiomyocytes within hours. The adult mammalian heart does not have an effective mechanism to replace lost cardiomyocytes. Instead, lost muscle is...

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Autores principales: Brunner, Rachel, Lai, Hsiao-Lei, Deliu, Zane, Melman, Elan, Geenen, David L., Wang, Q. Tian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5831801/
https://www.ncbi.nlm.nih.gov/pubmed/29615595
http://dx.doi.org/10.3390/jdb4040032
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author Brunner, Rachel
Lai, Hsiao-Lei
Deliu, Zane
Melman, Elan
Geenen, David L.
Wang, Q. Tian
author_facet Brunner, Rachel
Lai, Hsiao-Lei
Deliu, Zane
Melman, Elan
Geenen, David L.
Wang, Q. Tian
author_sort Brunner, Rachel
collection PubMed
description Heart attacks affect more than seven million people worldwide each year. A heart attack, or myocardial infarction, may result in the death of a billion cardiomyocytes within hours. The adult mammalian heart does not have an effective mechanism to replace lost cardiomyocytes. Instead, lost muscle is replaced with scar tissue, which decreases blood pumping ability and leads to heart failure over time. Here, we report that the loss of the chromatin factor ASXL2 results in spontaneous proliferation and cardiogenic differentiation of a subset of interstitial non-cardiomyocytes. The adult Asxl2(−/−) heart displays spontaneous overgrowth without cardiomyocyte hypertrophy. Thymidine analog labeling and Ki67 staining of 12-week-old hearts revealed 3- and 5-fold increases of proliferation rate for vimentin(+) non-cardiomyocytes in Asxl2(−/−) over age- and sex-matched wildtype controls, respectively. Approximately 10% of proliferating non-cardiomyocytes in the Asxl2(−/−) heart express the cardiogenic marker NKX2-5, a frequency that is ~7-fold higher than that observed in the wildtype. EdU lineage tracing experiments showed that ~6% of pulsed-labeled non-cardiomyocytes in Asxl2(−/−) hearts differentiate into mature cardiomyocytes after a four-week chase, a phenomenon not observed for similarly pulse-chased wildtype controls. Taken together, these data indicate de novo cardiomyocyte production in the Asxl2(−/−) heart due to activation of a population of proliferative cardiogenic non-cardiomyocytes. Our study suggests the existence of an epigenetic barrier to cardiogenicity in the adult heart and raises the intriguing possibility of unlocking regenerative potential via transient modulation of epigenetic activity.
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spelling pubmed-58318012018-03-30 Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood Brunner, Rachel Lai, Hsiao-Lei Deliu, Zane Melman, Elan Geenen, David L. Wang, Q. Tian J Dev Biol Article Heart attacks affect more than seven million people worldwide each year. A heart attack, or myocardial infarction, may result in the death of a billion cardiomyocytes within hours. The adult mammalian heart does not have an effective mechanism to replace lost cardiomyocytes. Instead, lost muscle is replaced with scar tissue, which decreases blood pumping ability and leads to heart failure over time. Here, we report that the loss of the chromatin factor ASXL2 results in spontaneous proliferation and cardiogenic differentiation of a subset of interstitial non-cardiomyocytes. The adult Asxl2(−/−) heart displays spontaneous overgrowth without cardiomyocyte hypertrophy. Thymidine analog labeling and Ki67 staining of 12-week-old hearts revealed 3- and 5-fold increases of proliferation rate for vimentin(+) non-cardiomyocytes in Asxl2(−/−) over age- and sex-matched wildtype controls, respectively. Approximately 10% of proliferating non-cardiomyocytes in the Asxl2(−/−) heart express the cardiogenic marker NKX2-5, a frequency that is ~7-fold higher than that observed in the wildtype. EdU lineage tracing experiments showed that ~6% of pulsed-labeled non-cardiomyocytes in Asxl2(−/−) hearts differentiate into mature cardiomyocytes after a four-week chase, a phenomenon not observed for similarly pulse-chased wildtype controls. Taken together, these data indicate de novo cardiomyocyte production in the Asxl2(−/−) heart due to activation of a population of proliferative cardiogenic non-cardiomyocytes. Our study suggests the existence of an epigenetic barrier to cardiogenicity in the adult heart and raises the intriguing possibility of unlocking regenerative potential via transient modulation of epigenetic activity. MDPI 2016-11-03 /pmc/articles/PMC5831801/ /pubmed/29615595 http://dx.doi.org/10.3390/jdb4040032 Text en © 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Brunner, Rachel
Lai, Hsiao-Lei
Deliu, Zane
Melman, Elan
Geenen, David L.
Wang, Q. Tian
Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title_full Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title_fullStr Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title_full_unstemmed Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title_short Asxl2(−/−) Mice Exhibit De Novo Cardiomyocyte Production during Adulthood
title_sort asxl2(−/−) mice exhibit de novo cardiomyocyte production during adulthood
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5831801/
https://www.ncbi.nlm.nih.gov/pubmed/29615595
http://dx.doi.org/10.3390/jdb4040032
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