Journal article

Bypassing mitochondrial complex III using alternative oxidase inhibits acute pulmonary oxygen sensing


Authors listSommers, Natascha; Alebrahimdehkordi, Nasim; Pak, Oleg; Knoepp, Fenja; Strielkov, Ievgen; Scheibe, Susan; Dufour, Eric; Andjelkovic, Ana; Sydykov, Akylbek; Saraji, Alireza; Petrovic, Aleksandar; Quanz, Karin; Heckert, Matthias; Kumar, Manish; Wahl, Joel; Kraut, Simone; Seeger, Werner; Schermuly, Ralph T.; Ghofrani, Hossein A.; Ramser, Kerstin; Braun, Thomas; Jacobs, Howard T.; Weissmann, Norbert; Szibor, Marten

Publication year2020

JournalScience Advances

Volume number6

Issue number16

ISSN2375-2548

Open access statusGold

DOI Linkhttps://doi.org/10.1126/sciadv.aba0694

PublisherAmerican Association for the Advancement of Science


Abstract
Mitochondria play an important role in sensing both acute and chronic hypoxia in the pulmonary vasculature, but their primary oxygen-sensing mechanism and contribution to stabilization of the hypoxia-inducible factor (HIF) remains elusive. Alteration of the mitochondrial electron flux and increased superoxide release from complex III has been proposed as an essential trigger for hypoxic pulmonary vasoconstriction (HPV). We used mice expressing a tunicate alternative oxidase, AOX, which maintains electron flux when respiratory complexes III and/or IV are inhibited. Respiratory restoration by AOX prevented acute HPV and hypoxic responses of pulmonary arterial smooth muscle cells (PASMC), acute hypoxia-induced redox changes of NADH and cytochrome c, and superoxide production. In contrast, AOX did not affect the development of chronic hypoxia-induced pulmonary hypertension and HIF-1 alpha stabilization. These results indicate that distal inhibition of the mitochondrial electron transport chain in PASMC is an essential initial step for acute but not chronic oxygen sensing.



Citation Styles

Harvard Citation styleSommers, N., Alebrahimdehkordi, N., Pak, O., Knoepp, F., Strielkov, I., Scheibe, S., et al. (2020) Bypassing mitochondrial complex III using alternative oxidase inhibits acute pulmonary oxygen sensing, Science Advances, 6(16), Article eaba0694. https://doi.org/10.1126/sciadv.aba0694

APA Citation styleSommers, N., Alebrahimdehkordi, N., Pak, O., Knoepp, F., Strielkov, I., Scheibe, S., Dufour, E., Andjelkovic, A., Sydykov, A., Saraji, A., Petrovic, A., Quanz, K., Heckert, M., Kumar, M., Wahl, J., Kraut, S., Seeger, W., Schermuly, R., Ghofrani, H., ...Szibor, M. (2020). Bypassing mitochondrial complex III using alternative oxidase inhibits acute pulmonary oxygen sensing. Science Advances. 6(16), Article eaba0694. https://doi.org/10.1126/sciadv.aba0694



Keywords


CYTOCHROMERESONANCE RAMANSMOOTH-MUSCLE-CELLSUNDERSTAND

Last updated on 2025-10-06 at 11:10