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Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma

Oncogenic KRas activates mitochondrial fission through Erk-mediated phosphorylation of the mitochondrial fission GTPase Drp1. Drp1 deletion inhibits tumorigenesis of KRas-driven pancreatic cancer, but the role of mitochondrial dynamics in other Ras-driven malignancies is poorly defined. Here we show...

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Autores principales: Sessions, Dane T., Kim, Kee-Beom, Kashatus, Jennifer A., Churchill, Nikolas, Park, Kwon-Sik, Mayo, Marty W., Sesaki, Hiromi, Kashatus, David F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265649/
https://www.ncbi.nlm.nih.gov/pubmed/36516772
http://dx.doi.org/10.1016/j.celrep.2022.111818
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author Sessions, Dane T.
Kim, Kee-Beom
Kashatus, Jennifer A.
Churchill, Nikolas
Park, Kwon-Sik
Mayo, Marty W.
Sesaki, Hiromi
Kashatus, David F.
author_facet Sessions, Dane T.
Kim, Kee-Beom
Kashatus, Jennifer A.
Churchill, Nikolas
Park, Kwon-Sik
Mayo, Marty W.
Sesaki, Hiromi
Kashatus, David F.
author_sort Sessions, Dane T.
collection PubMed
description Oncogenic KRas activates mitochondrial fission through Erk-mediated phosphorylation of the mitochondrial fission GTPase Drp1. Drp1 deletion inhibits tumorigenesis of KRas-driven pancreatic cancer, but the role of mitochondrial dynamics in other Ras-driven malignancies is poorly defined. Here we show that in vitro and in vivo growth of KRas-driven lung adenocarcinoma is unaffected by deletion of Drp1 but is inhibited by deletion of Opa1, the GTPase that regulates inner membrane fusion and proper cristae morphology. Mechanistically, Opa1 knockout disrupts cristae morphology and inhibits electron transport chain (ETC) assembly and activity, which inhibits tumor cell proliferation through loss of NAD(+) regeneration. Simultaneous inactivation of Drp1 and Opa1 restores cristae morphology, ETC activity, and cell proliferation indicating that mitochondrial fission activity drives ETC dysfunction induced by Opa1 knockout. Our results support a model in which mitochondrial fission events disrupt cristae structure, and tumor cells with hyperactive fission activity require Opa1 activity to maintain ETC function.
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spelling pubmed-102656492023-06-14 Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma Sessions, Dane T. Kim, Kee-Beom Kashatus, Jennifer A. Churchill, Nikolas Park, Kwon-Sik Mayo, Marty W. Sesaki, Hiromi Kashatus, David F. Cell Rep Article Oncogenic KRas activates mitochondrial fission through Erk-mediated phosphorylation of the mitochondrial fission GTPase Drp1. Drp1 deletion inhibits tumorigenesis of KRas-driven pancreatic cancer, but the role of mitochondrial dynamics in other Ras-driven malignancies is poorly defined. Here we show that in vitro and in vivo growth of KRas-driven lung adenocarcinoma is unaffected by deletion of Drp1 but is inhibited by deletion of Opa1, the GTPase that regulates inner membrane fusion and proper cristae morphology. Mechanistically, Opa1 knockout disrupts cristae morphology and inhibits electron transport chain (ETC) assembly and activity, which inhibits tumor cell proliferation through loss of NAD(+) regeneration. Simultaneous inactivation of Drp1 and Opa1 restores cristae morphology, ETC activity, and cell proliferation indicating that mitochondrial fission activity drives ETC dysfunction induced by Opa1 knockout. Our results support a model in which mitochondrial fission events disrupt cristae structure, and tumor cells with hyperactive fission activity require Opa1 activity to maintain ETC function. 2022-12-13 /pmc/articles/PMC10265649/ /pubmed/36516772 http://dx.doi.org/10.1016/j.celrep.2022.111818 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Sessions, Dane T.
Kim, Kee-Beom
Kashatus, Jennifer A.
Churchill, Nikolas
Park, Kwon-Sik
Mayo, Marty W.
Sesaki, Hiromi
Kashatus, David F.
Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title_full Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title_fullStr Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title_full_unstemmed Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title_short Opa1 and Drp1 reciprocally regulate cristae morphology, ETC function, and NAD(+) regeneration in KRas-mutant lung adenocarcinoma
title_sort opa1 and drp1 reciprocally regulate cristae morphology, etc function, and nad(+) regeneration in kras-mutant lung adenocarcinoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265649/
https://www.ncbi.nlm.nih.gov/pubmed/36516772
http://dx.doi.org/10.1016/j.celrep.2022.111818
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