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  4. IDH3γ functions as a redox switch regulating mitochondrial energy metabolism and contractility in the heart
 
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2023
Journal Article
Title

IDH3γ functions as a redox switch regulating mitochondrial energy metabolism and contractility in the heart

Abstract
Redox signaling and cardiac function are tightly linked. However, it is largely unknown which protein targets are affected by hydrogen peroxide (H2O2) in cardiomyocytes that underly impaired inotropic effects during oxidative stress. Here, we combine a chemogenetic mouse model (HyPer-DAO mice) and a redox-proteomics approach to identify redox sensitive proteins. Using the HyPer-DAO mice, we demonstrate that increased endogenous production of H2O2 in cardiomyocytes leads to a reversible impairment of cardiac contractility in vivo. Notably, we identify the γ-subunit of the TCA cycle enzyme isocitrate dehydrogenase (IDH)3 as a redox switch, linking its modification to altered mitochondrial metabolism. Using microsecond molecular dynamics simulations and experiments using cysteine-gene-edited cells reveal that IDH3γ Cys148 and 284 are critically involved in the H2O2-dependent regulation of IDH3 activity. Our findings provide an unexpected mechanism by which mitochondrial metabolism can be modulated through redox signaling processes.
Author(s)
Nanadikar, Maithily S.
Vergel Leon, Ana M.
Guo, Jia
Belle, Gijsbert J. van
Jatho, Aline
Philip, Elvina S.
Brandner, Astrid Febe
Böckmann, Rainer Arnold
Shi, Runzhu
Zieseniss, Anke
Siemssen, Carla M.
Dettmer, Katja
Brodesser, Susanne
Schmidtendorf, Marlen
Lee, Jingyun
Wu, Hanzhi
Furdui, Cristina M.
Brandenburg, Sören
Burgoyne, Joseph Robert
Bogeski, Ivan
Riemer, Jan
Chowdhury, Arpita
Rehling, Peter
Fraunhofer-Institut für Translationale Medizin und Pharmakologie ITMP  
Bruegmann, Tobias
Belousov, Vsevolod V.
Katschinski, Dörthe Magdalena
Journal
Nature Communications  
Open Access
DOI
10.1038/s41467-023-37744-x
Additional link
Full text
Language
English
Fraunhofer-Institut für Translationale Medizin und Pharmakologie ITMP  
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