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Heart-specific Rpd3 downregulation enhances cardiac function and longevity

Downregulation of Rpd3, a homologue of mammalian Histone Deacetylase 1 (HDAC1), extends lifespan in Drosophila melanogaster. Once revealed that long-lived fruit flies exhibit limited cardiac decline, we investigated whether Rpd3 downregulation would improve stress resistance and/or lifespan when tar...

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Autores principales: Kopp, Zachary A., Hsieh, Jo-Lin, Li, Andrew, Wang, William, Bhatt, Dhelni T., Lee, Angela, Kim, Sae Yeon, Fan, David, Shah, Veevek, Siddiqui, Emaad, Ragam, Radhika, Park, Kristen, Ardeshna, Dev, Park, Kunwoo, Wu, Rachel, Parikh, Hardik, Parikh, Ayush, Lin, Yuh-Ru, Park, Yongkyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600623/
https://www.ncbi.nlm.nih.gov/pubmed/26399365
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author Kopp, Zachary A.
Hsieh, Jo-Lin
Li, Andrew
Wang, William
Bhatt, Dhelni T.
Lee, Angela
Kim, Sae Yeon
Fan, David
Shah, Veevek
Siddiqui, Emaad
Ragam, Radhika
Park, Kristen
Ardeshna, Dev
Park, Kunwoo
Wu, Rachel
Parikh, Hardik
Parikh, Ayush
Lin, Yuh-Ru
Park, Yongkyu
author_facet Kopp, Zachary A.
Hsieh, Jo-Lin
Li, Andrew
Wang, William
Bhatt, Dhelni T.
Lee, Angela
Kim, Sae Yeon
Fan, David
Shah, Veevek
Siddiqui, Emaad
Ragam, Radhika
Park, Kristen
Ardeshna, Dev
Park, Kunwoo
Wu, Rachel
Parikh, Hardik
Parikh, Ayush
Lin, Yuh-Ru
Park, Yongkyu
author_sort Kopp, Zachary A.
collection PubMed
description Downregulation of Rpd3, a homologue of mammalian Histone Deacetylase 1 (HDAC1), extends lifespan in Drosophila melanogaster. Once revealed that long-lived fruit flies exhibit limited cardiac decline, we investigated whether Rpd3 downregulation would improve stress resistance and/or lifespan when targeted in the heart. Contested against three different stressors (oxidation, starvation and heat), heart-specific Rpd3 downregulation significantly enhanced stress resistance in flies. However, these higher levels of resistance were not observed when Rpd3 downregulation was targeted in other tissues or when other long-lived flies were tested in the heart-specific manner. Interestingly, the expressions of anti-aging genes such as sod2, foxo and Thor, were systemically increased as a consequence of heart-specific Rpd3 downregulation. Showing higher resistance to oxidative stress, the heart-specific Rpd3 downregulation concurrently exhibited improved cardiac functions, demonstrating an increased heart rate, decreased heart failure and accelerated heart recovery. Conversely, Rpd3 upregulation in cardiac tissue reduced systemic resistance against heat stress with decreased heart function, also specifying phosphorylated Rpd3 levels as a significant modulator. Continual downregulation of Rpd3 throughout aging increased lifespan, implicating that Rpd3 deacetylase in the heart plays a significant role in cardiac function and longevity to systemically modulate the fly's response to the environment.
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spelling pubmed-46006232015-10-22 Heart-specific Rpd3 downregulation enhances cardiac function and longevity Kopp, Zachary A. Hsieh, Jo-Lin Li, Andrew Wang, William Bhatt, Dhelni T. Lee, Angela Kim, Sae Yeon Fan, David Shah, Veevek Siddiqui, Emaad Ragam, Radhika Park, Kristen Ardeshna, Dev Park, Kunwoo Wu, Rachel Parikh, Hardik Parikh, Ayush Lin, Yuh-Ru Park, Yongkyu Aging (Albany NY) Research Paper Downregulation of Rpd3, a homologue of mammalian Histone Deacetylase 1 (HDAC1), extends lifespan in Drosophila melanogaster. Once revealed that long-lived fruit flies exhibit limited cardiac decline, we investigated whether Rpd3 downregulation would improve stress resistance and/or lifespan when targeted in the heart. Contested against three different stressors (oxidation, starvation and heat), heart-specific Rpd3 downregulation significantly enhanced stress resistance in flies. However, these higher levels of resistance were not observed when Rpd3 downregulation was targeted in other tissues or when other long-lived flies were tested in the heart-specific manner. Interestingly, the expressions of anti-aging genes such as sod2, foxo and Thor, were systemically increased as a consequence of heart-specific Rpd3 downregulation. Showing higher resistance to oxidative stress, the heart-specific Rpd3 downregulation concurrently exhibited improved cardiac functions, demonstrating an increased heart rate, decreased heart failure and accelerated heart recovery. Conversely, Rpd3 upregulation in cardiac tissue reduced systemic resistance against heat stress with decreased heart function, also specifying phosphorylated Rpd3 levels as a significant modulator. Continual downregulation of Rpd3 throughout aging increased lifespan, implicating that Rpd3 deacetylase in the heart plays a significant role in cardiac function and longevity to systemically modulate the fly's response to the environment. Impact Journals LLC 2015-09-21 /pmc/articles/PMC4600623/ /pubmed/26399365 Text en Copyright: © 2015 Kopp et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Kopp, Zachary A.
Hsieh, Jo-Lin
Li, Andrew
Wang, William
Bhatt, Dhelni T.
Lee, Angela
Kim, Sae Yeon
Fan, David
Shah, Veevek
Siddiqui, Emaad
Ragam, Radhika
Park, Kristen
Ardeshna, Dev
Park, Kunwoo
Wu, Rachel
Parikh, Hardik
Parikh, Ayush
Lin, Yuh-Ru
Park, Yongkyu
Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title_full Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title_fullStr Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title_full_unstemmed Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title_short Heart-specific Rpd3 downregulation enhances cardiac function and longevity
title_sort heart-specific rpd3 downregulation enhances cardiac function and longevity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600623/
https://www.ncbi.nlm.nih.gov/pubmed/26399365
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