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Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain

Human MIA40, an intermembrane space (IMS) import receptor of mitochondria harbors twin CX9C motifs for stability while its CPC motif is known to facilitate the import of IMS bound proteins. Site-directed mutagenesis complemented by MALDI on in vivo hMIA40 protein shows that a portion of MIA40 underg...

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Autores principales: Thiriveedi, Venkata Ramana, Mattam, Ushodaya, Pattabhi, Prasad, Bisoyi, Vandana, Talari, Noble Kumar, Krishnamoorthy, Thanuja, Sepuri, Naresh Babu V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7511737/
https://www.ncbi.nlm.nih.gov/pubmed/32971361
http://dx.doi.org/10.1016/j.redox.2020.101725
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author Thiriveedi, Venkata Ramana
Mattam, Ushodaya
Pattabhi, Prasad
Bisoyi, Vandana
Talari, Noble Kumar
Krishnamoorthy, Thanuja
Sepuri, Naresh Babu V.
author_facet Thiriveedi, Venkata Ramana
Mattam, Ushodaya
Pattabhi, Prasad
Bisoyi, Vandana
Talari, Noble Kumar
Krishnamoorthy, Thanuja
Sepuri, Naresh Babu V.
author_sort Thiriveedi, Venkata Ramana
collection PubMed
description Human MIA40, an intermembrane space (IMS) import receptor of mitochondria harbors twin CX9C motifs for stability while its CPC motif is known to facilitate the import of IMS bound proteins. Site-directed mutagenesis complemented by MALDI on in vivo hMIA40 protein shows that a portion of MIA40 undergoes reversible S-glutathionylation at three cysteines in the twin CX9C motifs and the lone cysteine 4 residue. We find that HEK293T cells expressing hMIA40 mutant defective for glutathionylation are compromised in the activities of complexes III and IV of the Electron Transport Chain (ETC) and enhance Reactive Oxygen Species (ROS) levels. Immunocapture studies show MIA40 interacting with complex III. Interestingly, glutathionylated MIA40 can transfer electrons to cytochrome C directly. However, Fe–S clusters associated with the CPC motif are essential to facilitate the two-electron to one-electron transfer for reducing cytochrome C. These results suggest that hMIA40 undergoes glutathionylation to maintain ROS levels and for optimum function of complexes III and IV of ETC. Our studies shed light on a novel post-translational modification of hMIA40 and its ability to act as a redox switch to regulate the ETC and cellular redox homeostasis.
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spelling pubmed-75117372020-09-30 Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain Thiriveedi, Venkata Ramana Mattam, Ushodaya Pattabhi, Prasad Bisoyi, Vandana Talari, Noble Kumar Krishnamoorthy, Thanuja Sepuri, Naresh Babu V. Redox Biol Research Paper Human MIA40, an intermembrane space (IMS) import receptor of mitochondria harbors twin CX9C motifs for stability while its CPC motif is known to facilitate the import of IMS bound proteins. Site-directed mutagenesis complemented by MALDI on in vivo hMIA40 protein shows that a portion of MIA40 undergoes reversible S-glutathionylation at three cysteines in the twin CX9C motifs and the lone cysteine 4 residue. We find that HEK293T cells expressing hMIA40 mutant defective for glutathionylation are compromised in the activities of complexes III and IV of the Electron Transport Chain (ETC) and enhance Reactive Oxygen Species (ROS) levels. Immunocapture studies show MIA40 interacting with complex III. Interestingly, glutathionylated MIA40 can transfer electrons to cytochrome C directly. However, Fe–S clusters associated with the CPC motif are essential to facilitate the two-electron to one-electron transfer for reducing cytochrome C. These results suggest that hMIA40 undergoes glutathionylation to maintain ROS levels and for optimum function of complexes III and IV of ETC. Our studies shed light on a novel post-translational modification of hMIA40 and its ability to act as a redox switch to regulate the ETC and cellular redox homeostasis. Elsevier 2020-09-15 /pmc/articles/PMC7511737/ /pubmed/32971361 http://dx.doi.org/10.1016/j.redox.2020.101725 Text en © 2020 The Authors http://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
Thiriveedi, Venkata Ramana
Mattam, Ushodaya
Pattabhi, Prasad
Bisoyi, Vandana
Talari, Noble Kumar
Krishnamoorthy, Thanuja
Sepuri, Naresh Babu V.
Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title_full Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title_fullStr Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title_full_unstemmed Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title_short Glutathionylated and Fe–S cluster containing hMIA40 (CHCHD4) regulates ROS and mitochondrial complex III and IV activities of the electron transport chain
title_sort glutathionylated and fe–s cluster containing hmia40 (chchd4) regulates ros and mitochondrial complex iii and iv activities of the electron transport chain
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7511737/
https://www.ncbi.nlm.nih.gov/pubmed/32971361
http://dx.doi.org/10.1016/j.redox.2020.101725
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