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Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status

Dynamic regulation of mitochondrial morphology provides cells with the flexibility required to adapt and respond to electron transport chain (ETC) toxins and mitochondrial DNA-linked disease mutations, yet the mechanisms underpinning the regulation of mitochondrial dynamics machinery by these stimul...

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Autores principales: Thoudam, Themis, Chanda, Dipanjan, Sinam, Ibotombi Singh, Kim, Byung-Gyu, Kim, Mi-Jin, Oh, Chang Joo, Lee, Jung Yi, Kim, Min-Ji, Park, Soo Yeun, Lee, Shin Yup, Jung, Min-Kyo, Mun, Ji Young, Harris, Robert A., Ishihara, Naotada, Jeon, Jae-Han, Lee, In-Kyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407676/
https://www.ncbi.nlm.nih.gov/pubmed/35969774
http://dx.doi.org/10.1073/pnas.2120157119
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author Thoudam, Themis
Chanda, Dipanjan
Sinam, Ibotombi Singh
Kim, Byung-Gyu
Kim, Mi-Jin
Oh, Chang Joo
Lee, Jung Yi
Kim, Min-Ji
Park, Soo Yeun
Lee, Shin Yup
Jung, Min-Kyo
Mun, Ji Young
Harris, Robert A.
Ishihara, Naotada
Jeon, Jae-Han
Lee, In-Kyu
author_facet Thoudam, Themis
Chanda, Dipanjan
Sinam, Ibotombi Singh
Kim, Byung-Gyu
Kim, Mi-Jin
Oh, Chang Joo
Lee, Jung Yi
Kim, Min-Ji
Park, Soo Yeun
Lee, Shin Yup
Jung, Min-Kyo
Mun, Ji Young
Harris, Robert A.
Ishihara, Naotada
Jeon, Jae-Han
Lee, In-Kyu
author_sort Thoudam, Themis
collection PubMed
description Dynamic regulation of mitochondrial morphology provides cells with the flexibility required to adapt and respond to electron transport chain (ETC) toxins and mitochondrial DNA-linked disease mutations, yet the mechanisms underpinning the regulation of mitochondrial dynamics machinery by these stimuli is poorly understood. Here, we show that pyruvate dehydrogenase kinase 4 (PDK4) is genetically required for cells to undergo rapid mitochondrial fragmentation when challenged with ETC toxins. Moreover, PDK4 overexpression was sufficient to promote mitochondrial fission even in the absence of mitochondrial stress. Importantly, we observed that the PDK4-mediated regulation of mitochondrial fission was independent of its canonical function, i.e., inhibitory phosphorylation of the pyruvate dehydrogenase complex (PDC). Phosphoproteomic screen for PDK4 substrates, followed by nonphosphorylatable and phosphomimetic mutations of the PDK4 site revealed cytoplasmic GTPase, Septin 2 (SEPT2), as the key effector molecule that acts as a receptor for DRP1 in the outer mitochondrial membrane to promote mitochondrial fission. Conversely, inhibition of the PDK4-SEPT2 axis could restore the balance in mitochondrial dynamics and reinvigorates cellular respiration in mitochondrial fusion factor, mitofusin 2-deficient cells. Furthermore, PDK4-mediated mitochondrial reshaping limits mitochondrial bioenergetics and supports cancer cell growth. Our results identify the PDK4-SEPT2-DRP1 axis as a regulator of mitochondrial function at the interface between cellular bioenergetics and mitochondrial dynamics.
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spelling pubmed-94076762023-02-15 Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status Thoudam, Themis Chanda, Dipanjan Sinam, Ibotombi Singh Kim, Byung-Gyu Kim, Mi-Jin Oh, Chang Joo Lee, Jung Yi Kim, Min-Ji Park, Soo Yeun Lee, Shin Yup Jung, Min-Kyo Mun, Ji Young Harris, Robert A. Ishihara, Naotada Jeon, Jae-Han Lee, In-Kyu Proc Natl Acad Sci U S A Biological Sciences Dynamic regulation of mitochondrial morphology provides cells with the flexibility required to adapt and respond to electron transport chain (ETC) toxins and mitochondrial DNA-linked disease mutations, yet the mechanisms underpinning the regulation of mitochondrial dynamics machinery by these stimuli is poorly understood. Here, we show that pyruvate dehydrogenase kinase 4 (PDK4) is genetically required for cells to undergo rapid mitochondrial fragmentation when challenged with ETC toxins. Moreover, PDK4 overexpression was sufficient to promote mitochondrial fission even in the absence of mitochondrial stress. Importantly, we observed that the PDK4-mediated regulation of mitochondrial fission was independent of its canonical function, i.e., inhibitory phosphorylation of the pyruvate dehydrogenase complex (PDC). Phosphoproteomic screen for PDK4 substrates, followed by nonphosphorylatable and phosphomimetic mutations of the PDK4 site revealed cytoplasmic GTPase, Septin 2 (SEPT2), as the key effector molecule that acts as a receptor for DRP1 in the outer mitochondrial membrane to promote mitochondrial fission. Conversely, inhibition of the PDK4-SEPT2 axis could restore the balance in mitochondrial dynamics and reinvigorates cellular respiration in mitochondrial fusion factor, mitofusin 2-deficient cells. Furthermore, PDK4-mediated mitochondrial reshaping limits mitochondrial bioenergetics and supports cancer cell growth. Our results identify the PDK4-SEPT2-DRP1 axis as a regulator of mitochondrial function at the interface between cellular bioenergetics and mitochondrial dynamics. National Academy of Sciences 2022-08-15 2022-08-23 /pmc/articles/PMC9407676/ /pubmed/35969774 http://dx.doi.org/10.1073/pnas.2120157119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Thoudam, Themis
Chanda, Dipanjan
Sinam, Ibotombi Singh
Kim, Byung-Gyu
Kim, Mi-Jin
Oh, Chang Joo
Lee, Jung Yi
Kim, Min-Ji
Park, Soo Yeun
Lee, Shin Yup
Jung, Min-Kyo
Mun, Ji Young
Harris, Robert A.
Ishihara, Naotada
Jeon, Jae-Han
Lee, In-Kyu
Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title_full Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title_fullStr Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title_full_unstemmed Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title_short Noncanonical PDK4 action alters mitochondrial dynamics to affect the cellular respiratory status
title_sort noncanonical pdk4 action alters mitochondrial dynamics to affect the cellular respiratory status
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407676/
https://www.ncbi.nlm.nih.gov/pubmed/35969774
http://dx.doi.org/10.1073/pnas.2120157119
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