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Hydrolytic Activity of Mitochondrial F1FO-ATP Synthase as a Target for Myocardial Ischemia–Reperfusion Injury: Discovery and In Vitroand In VivoEvaluation of Novel Inhibitors

Authors :
Nikolaou, Panagiota-Efstathia
Lambrinidis, George
Georgiou, Maria
Karagiannis, Dimitrios
Efentakis, Panagiotis
Bessis-Lazarou, Pavlos
Founta, Konstantina
Kampoukos, Stavros
Konstantin, Vasilis
Palmeira, Carlos M.
Davidson, Sean M.
Lougiakis, Nikolaos
Marakos, Panagiotis
Pouli, Nicole
Mikros, Emmanuel
Andreadou, Ioanna
Source :
Journal of Medicinal Chemistry; November 2023, Vol. 66 Issue: 22 p15115-15140, 26p
Publication Year :
2023

Abstract

F1FO-ATP synthase is the mitochondrial complex responsible for ATP production. During myocardial ischemia, it reverses its activity, hydrolyzing ATP and leading to energetic deficit and cardiac injury. We aimed to discover novel inhibitors of ATP hydrolysis, accessing the druggability of the target within ischemia(I)/reperfusion(R) injury. New molecular scaffolds were revealed using ligand-based virtual screening methods. Fifty-five compounds were tested on isolated murine heart mitochondria and H9c2 cells for their inhibitory activity. A pyrazolo[3,4-c]pyridine hit structure was identified and optimized in a hit-to-lead process synthesizing nine novel derivatives. Three derivatives significantly inhibited ATP hydrolysis in vitro, while in vivo, they reduced myocardial infarct size (IS). The novel compound 31was the most effective in reducing IS, validating that inhibition of F1FO-ATP hydrolytic activity can serve as a target for cardioprotection during ischemia. Further examination of signaling pathways revealed that the cardioprotection mechanism is related to the increased ATP content in the ischemic myocardium and increased phosphorylation of PKA and phospholamban, leading to the reduction of apoptosis.

Details

Language :
English
ISSN :
00222623 and 15204804
Volume :
66
Issue :
22
Database :
Supplemental Index
Journal :
Journal of Medicinal Chemistry
Publication Type :
Periodical
Accession number :
ejs64452300
Full Text :
https://doi.org/10.1021/acs.jmedchem.3c01048