Genetic deletion of p66shc and/or cyclophilin D results in decreased pulmonary vascular tone
Cardiovascular Research

Abstract
The pulmonary vascular tone and hypoxia-induced alterations of the pulmonary vasculature may be regulated by the mitochondrial membrane permeability transition pore (mPTP) that controls mitochondrial calcium load and apoptosis. We thus investigated, if the mitochondrial proteins p66shc and cyclophilin D (CypD) that regulate mPTP opening affect the pulmonary vascular tone.
Mice deficient for p66shc (p66shc−/−), CypD (CypD−/−), or both proteins (p66shc/CypD−/−) exhibited decreased pulmonary vascular resistance (PVR) compared to wild-type mice determined in isolated lungs and
We conclude that p66shc specifically regulates the pulmonary vascular tone, while CypD also affects systemic pressure. However, only CypD acts via regulation of mPTP opening and mitochondrial calcium regulation.
Contributors

Mareike Gierhardt
Author

Oleg Pak
Author

Akylbek Sydykov
Author

Simone Kraut
Author

Julia Schäffer
Author

Claudia Garcia
Author

Christine Veith
Author

Esraa M Zeidan
Author

Monika Brosien
Author

Karin Quanz
Author

Azadeh Esfandiary
Author

Alireza Saraji
Author

Stefan Hadzic
Author

Baktybek Kojonazarov
Author

Jochen Wilhelm
Author

Hossein A Ghofrani
Author

Ralph T Schermuly
Author

Werner Seeger
Author

Friedrich Grimminger
Author

Christiane Herden
Author

Rainer Schulz
Author

Norbert Weissmann
Author

Jacqueline Heger
Author

Natascha Sommer
Author
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