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RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis

Dose limiting cardiotoxicity remains a major limiting factor in the clinical use of several cancer chemotherapeutics including anthracyclines and the antimetabolite 5-fluorouracil (5-FU). Prior work has demonstrated that chemotherapeutics increase expression of R7 family regulator of G protein signa...

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Autores principales: Das, Kiran, Basak, Madhuri, Mahata, Tarun, Kumar, Manish, Kumar, Dinesh, Biswas, Sayan, Chatterjee, Suvro, Moniruzzaman, Mahammed, Saha, Nimai Chandra, Mondal, Kausik, Kumar, Pranesh, Das, Priyadip, Stewart, Adele, Maity, Biswanath
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9557029/
https://www.ncbi.nlm.nih.gov/pubmed/36228439
http://dx.doi.org/10.1016/j.redox.2022.102487
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author Das, Kiran
Basak, Madhuri
Mahata, Tarun
Kumar, Manish
Kumar, Dinesh
Biswas, Sayan
Chatterjee, Suvro
Moniruzzaman, Mahammed
Saha, Nimai Chandra
Mondal, Kausik
Kumar, Pranesh
Das, Priyadip
Stewart, Adele
Maity, Biswanath
author_facet Das, Kiran
Basak, Madhuri
Mahata, Tarun
Kumar, Manish
Kumar, Dinesh
Biswas, Sayan
Chatterjee, Suvro
Moniruzzaman, Mahammed
Saha, Nimai Chandra
Mondal, Kausik
Kumar, Pranesh
Das, Priyadip
Stewart, Adele
Maity, Biswanath
author_sort Das, Kiran
collection PubMed
description Dose limiting cardiotoxicity remains a major limiting factor in the clinical use of several cancer chemotherapeutics including anthracyclines and the antimetabolite 5-fluorouracil (5-FU). Prior work has demonstrated that chemotherapeutics increase expression of R7 family regulator of G protein signaling (RGS) protein-binding partner Gβ(5), which drives myocyte cytotoxicity. However, though several R7 family members are expressed in heart, the exact role of each protein in chemotherapy driven heart damage remains unclear. Here, we demonstrate that RGS11, downregulated in the human heart following chemotherapy exposure, possesses potent anti-apoptotic actions, in direct opposition to the actions of fellow R7 family member RGS6. RGS11 forms a direct complex with the apoptotic kinase CaMKII and stress responsive transcription factor ATF3 and acts to counterbalance the ability of CaMKII and ATF3 to trigger oxidative stress, mitochondrial dysfunction, cell death, and release of the cardiokine neuregulin-1 (NRG1), which mediates pathological intercommunication between myocytes and endothelial cells. Doxorubicin triggers RGS11 depletion in the murine myocardium, and cardiac-specific OE of RGS11 decreases doxorubicin-induced fibrosis, myocyte hypertrophy, apoptosis, oxidative stress, and cell loss and aids in the maintenance of left ventricular function. Conversely, RGS11 knockdown in heart promotes cardiac fibrosis associated with CaMKII activation and ATF3/NRG1 induction. Indeed, inhibition of CaMKII largely prevents the fibrotic remodeling resulting from cardiac RGS11 depletion underscoring the functional importance of the RGS11-CaMKII interaction in the pathogenesis of cardiac fibrosis. These data describe an entirely new role for RGS11 in heart and identify RGS11 as a potential new target for amelioration of chemotherapy-induced cardiotoxicity.
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spelling pubmed-95570292022-10-14 RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis Das, Kiran Basak, Madhuri Mahata, Tarun Kumar, Manish Kumar, Dinesh Biswas, Sayan Chatterjee, Suvro Moniruzzaman, Mahammed Saha, Nimai Chandra Mondal, Kausik Kumar, Pranesh Das, Priyadip Stewart, Adele Maity, Biswanath Redox Biol Research Paper Dose limiting cardiotoxicity remains a major limiting factor in the clinical use of several cancer chemotherapeutics including anthracyclines and the antimetabolite 5-fluorouracil (5-FU). Prior work has demonstrated that chemotherapeutics increase expression of R7 family regulator of G protein signaling (RGS) protein-binding partner Gβ(5), which drives myocyte cytotoxicity. However, though several R7 family members are expressed in heart, the exact role of each protein in chemotherapy driven heart damage remains unclear. Here, we demonstrate that RGS11, downregulated in the human heart following chemotherapy exposure, possesses potent anti-apoptotic actions, in direct opposition to the actions of fellow R7 family member RGS6. RGS11 forms a direct complex with the apoptotic kinase CaMKII and stress responsive transcription factor ATF3 and acts to counterbalance the ability of CaMKII and ATF3 to trigger oxidative stress, mitochondrial dysfunction, cell death, and release of the cardiokine neuregulin-1 (NRG1), which mediates pathological intercommunication between myocytes and endothelial cells. Doxorubicin triggers RGS11 depletion in the murine myocardium, and cardiac-specific OE of RGS11 decreases doxorubicin-induced fibrosis, myocyte hypertrophy, apoptosis, oxidative stress, and cell loss and aids in the maintenance of left ventricular function. Conversely, RGS11 knockdown in heart promotes cardiac fibrosis associated with CaMKII activation and ATF3/NRG1 induction. Indeed, inhibition of CaMKII largely prevents the fibrotic remodeling resulting from cardiac RGS11 depletion underscoring the functional importance of the RGS11-CaMKII interaction in the pathogenesis of cardiac fibrosis. These data describe an entirely new role for RGS11 in heart and identify RGS11 as a potential new target for amelioration of chemotherapy-induced cardiotoxicity. Elsevier 2022-09-27 /pmc/articles/PMC9557029/ /pubmed/36228439 http://dx.doi.org/10.1016/j.redox.2022.102487 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Das, Kiran
Basak, Madhuri
Mahata, Tarun
Kumar, Manish
Kumar, Dinesh
Biswas, Sayan
Chatterjee, Suvro
Moniruzzaman, Mahammed
Saha, Nimai Chandra
Mondal, Kausik
Kumar, Pranesh
Das, Priyadip
Stewart, Adele
Maity, Biswanath
RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title_full RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title_fullStr RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title_full_unstemmed RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title_short RGS11-CaMKII complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
title_sort rgs11-camkii complex mediated redox control attenuates chemotherapy-induced cardiac fibrosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9557029/
https://www.ncbi.nlm.nih.gov/pubmed/36228439
http://dx.doi.org/10.1016/j.redox.2022.102487
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