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A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8

Adult (3 month) mice with cardiac-specific overexpression of adenylyl cyclase (AC) type VIII (TG(AC8)) adapt to an increased cAMP-induced cardiac workload (~30% increases in heart rate, ejection fraction and cardiac output) for up to a year without signs of heart failure or excessive mortality. Here...

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Autores principales: Tarasov, Kirill V, Chakir, Khalid, Riordon, Daniel R, Lyashkov, Alexey E, Ahmet, Ismayil, Perino, Maria Grazia, Silvester, Allwin Jennifa, Zhang, Jing, Wang, Mingyi, Lukyanenko, Yevgeniya O, Qu, Jia-Hua, Barrera, Miguel Calvo-Rubio, Juhaszova, Magdalena, Tarasova, Yelena S, Ziman, Bruce, Telljohann, Richard, Kumar, Vikas, Ranek, Mark, Lammons, John, Bychkov, Rostislav, de Cabo, Rafael, Jun, Seungho, Keceli, Gizem, Gupta, Ashish, Yang, Dongmei, Aon, Miguel A, Adamo, Luigi, Morrell, Christopher H, Otu, Walter, Carroll, Cameron, Chambers, Shane, Paolocci, Nazareno, Huynh, Thanh, Pacak, Karel, Weiss, Robert, Field, Loren, Sollott, Steven J, Lakatta, Edward G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822292/
https://www.ncbi.nlm.nih.gov/pubmed/36515265
http://dx.doi.org/10.7554/eLife.80949
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author Tarasov, Kirill V
Chakir, Khalid
Riordon, Daniel R
Lyashkov, Alexey E
Ahmet, Ismayil
Perino, Maria Grazia
Silvester, Allwin Jennifa
Zhang, Jing
Wang, Mingyi
Lukyanenko, Yevgeniya O
Qu, Jia-Hua
Barrera, Miguel Calvo-Rubio
Juhaszova, Magdalena
Tarasova, Yelena S
Ziman, Bruce
Telljohann, Richard
Kumar, Vikas
Ranek, Mark
Lammons, John
Bychkov, Rostislav
de Cabo, Rafael
Jun, Seungho
Keceli, Gizem
Gupta, Ashish
Yang, Dongmei
Aon, Miguel A
Adamo, Luigi
Morrell, Christopher H
Otu, Walter
Carroll, Cameron
Chambers, Shane
Paolocci, Nazareno
Huynh, Thanh
Pacak, Karel
Weiss, Robert
Field, Loren
Sollott, Steven J
Lakatta, Edward G
author_facet Tarasov, Kirill V
Chakir, Khalid
Riordon, Daniel R
Lyashkov, Alexey E
Ahmet, Ismayil
Perino, Maria Grazia
Silvester, Allwin Jennifa
Zhang, Jing
Wang, Mingyi
Lukyanenko, Yevgeniya O
Qu, Jia-Hua
Barrera, Miguel Calvo-Rubio
Juhaszova, Magdalena
Tarasova, Yelena S
Ziman, Bruce
Telljohann, Richard
Kumar, Vikas
Ranek, Mark
Lammons, John
Bychkov, Rostislav
de Cabo, Rafael
Jun, Seungho
Keceli, Gizem
Gupta, Ashish
Yang, Dongmei
Aon, Miguel A
Adamo, Luigi
Morrell, Christopher H
Otu, Walter
Carroll, Cameron
Chambers, Shane
Paolocci, Nazareno
Huynh, Thanh
Pacak, Karel
Weiss, Robert
Field, Loren
Sollott, Steven J
Lakatta, Edward G
author_sort Tarasov, Kirill V
collection PubMed
description Adult (3 month) mice with cardiac-specific overexpression of adenylyl cyclase (AC) type VIII (TG(AC8)) adapt to an increased cAMP-induced cardiac workload (~30% increases in heart rate, ejection fraction and cardiac output) for up to a year without signs of heart failure or excessive mortality. Here, we show classical cardiac hypertrophy markers were absent in TG(AC8), and that total left ventricular (LV) mass was not increased: a reduced LV cavity volume in TG(AC8) was encased by thicker LV walls harboring an increased number of small cardiac myocytes, and a network of small interstitial proliferative non-cardiac myocytes compared to wild type (WT) littermates; Protein synthesis, proteosome activity, and autophagy were enhanced in TG(AC8) vs WT, and Nrf-2, Hsp90α, and ACC2 protein levels were increased. Despite increased energy demands in vivo LV ATP and phosphocreatine levels in TG(AC8) did not differ from WT. Unbiased omics analyses identified more than 2,000 transcripts and proteins, comprising a broad array of biological processes across multiple cellular compartments, which differed by genotype; compared to WT, in TG(AC8) there was a shift from fatty acid oxidation to aerobic glycolysis in the context of increased utilization of the pentose phosphate shunt and nucleotide synthesis. Thus, marked overexpression of AC8 engages complex, coordinate adaptation "circuity" that has evolved in mammalian cells to defend against stress that threatens health or life (elements of which have already been shown to be central to cardiac ischemic pre-conditioning and exercise endurance cardiac conditioning) that may be of biological significance to allow for proper healing in disease states such as infarction or failure of the heart.
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spelling pubmed-98222922023-01-07 A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8 Tarasov, Kirill V Chakir, Khalid Riordon, Daniel R Lyashkov, Alexey E Ahmet, Ismayil Perino, Maria Grazia Silvester, Allwin Jennifa Zhang, Jing Wang, Mingyi Lukyanenko, Yevgeniya O Qu, Jia-Hua Barrera, Miguel Calvo-Rubio Juhaszova, Magdalena Tarasova, Yelena S Ziman, Bruce Telljohann, Richard Kumar, Vikas Ranek, Mark Lammons, John Bychkov, Rostislav de Cabo, Rafael Jun, Seungho Keceli, Gizem Gupta, Ashish Yang, Dongmei Aon, Miguel A Adamo, Luigi Morrell, Christopher H Otu, Walter Carroll, Cameron Chambers, Shane Paolocci, Nazareno Huynh, Thanh Pacak, Karel Weiss, Robert Field, Loren Sollott, Steven J Lakatta, Edward G eLife Cell Biology Adult (3 month) mice with cardiac-specific overexpression of adenylyl cyclase (AC) type VIII (TG(AC8)) adapt to an increased cAMP-induced cardiac workload (~30% increases in heart rate, ejection fraction and cardiac output) for up to a year without signs of heart failure or excessive mortality. Here, we show classical cardiac hypertrophy markers were absent in TG(AC8), and that total left ventricular (LV) mass was not increased: a reduced LV cavity volume in TG(AC8) was encased by thicker LV walls harboring an increased number of small cardiac myocytes, and a network of small interstitial proliferative non-cardiac myocytes compared to wild type (WT) littermates; Protein synthesis, proteosome activity, and autophagy were enhanced in TG(AC8) vs WT, and Nrf-2, Hsp90α, and ACC2 protein levels were increased. Despite increased energy demands in vivo LV ATP and phosphocreatine levels in TG(AC8) did not differ from WT. Unbiased omics analyses identified more than 2,000 transcripts and proteins, comprising a broad array of biological processes across multiple cellular compartments, which differed by genotype; compared to WT, in TG(AC8) there was a shift from fatty acid oxidation to aerobic glycolysis in the context of increased utilization of the pentose phosphate shunt and nucleotide synthesis. Thus, marked overexpression of AC8 engages complex, coordinate adaptation "circuity" that has evolved in mammalian cells to defend against stress that threatens health or life (elements of which have already been shown to be central to cardiac ischemic pre-conditioning and exercise endurance cardiac conditioning) that may be of biological significance to allow for proper healing in disease states such as infarction or failure of the heart. eLife Sciences Publications, Ltd 2022-12-14 /pmc/articles/PMC9822292/ /pubmed/36515265 http://dx.doi.org/10.7554/eLife.80949 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Cell Biology
Tarasov, Kirill V
Chakir, Khalid
Riordon, Daniel R
Lyashkov, Alexey E
Ahmet, Ismayil
Perino, Maria Grazia
Silvester, Allwin Jennifa
Zhang, Jing
Wang, Mingyi
Lukyanenko, Yevgeniya O
Qu, Jia-Hua
Barrera, Miguel Calvo-Rubio
Juhaszova, Magdalena
Tarasova, Yelena S
Ziman, Bruce
Telljohann, Richard
Kumar, Vikas
Ranek, Mark
Lammons, John
Bychkov, Rostislav
de Cabo, Rafael
Jun, Seungho
Keceli, Gizem
Gupta, Ashish
Yang, Dongmei
Aon, Miguel A
Adamo, Luigi
Morrell, Christopher H
Otu, Walter
Carroll, Cameron
Chambers, Shane
Paolocci, Nazareno
Huynh, Thanh
Pacak, Karel
Weiss, Robert
Field, Loren
Sollott, Steven J
Lakatta, Edward G
A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title_full A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title_fullStr A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title_full_unstemmed A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title_short A remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of ADCY8
title_sort remarkable adaptive paradigm of heart performance and protection emerges in response to marked cardiac-specific overexpression of adcy8
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822292/
https://www.ncbi.nlm.nih.gov/pubmed/36515265
http://dx.doi.org/10.7554/eLife.80949
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