Kinetic model of the inhibition of respiration by endogenous nitric oxide in intact cells |
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Authors: | Enara Aguirre,Fé lix Rodrí guez-Juá rez,Andrea Bellelli,Susana Cadenas |
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Affiliation: | a Department of Regenerative Cardiology, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Melchor Fenández Almagro 3, 28029 Madrid, Spain b Dipartimento di Scienze Biochimiche and Istituto di Biologia e Patologia Molecolari del CNR, Università di Roma ‘Sapienza’, 00185 Roma, Italy c Department of General and Transplant Surgery, D. Swarovski Research Laboratory, Medical University of Innsbruck, 6020 Innsbruck, Austria d Servicio de Inmunología, Hospital Universitario de La Princesa, Diego de León 62, 28006 Madrid, Spain |
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Abstract: | Nitric oxide (NO) inhibits mitochondrial respiration by decreasing the apparent affinity of cytochrome c oxidase (CcO) for oxygen. Using iNOS-transfected HEK 293 cells to achieve regulated intracellular NO production, we determined NO and O2 concentrations and mitochondrial O2 consumption by high-resolution respirometry over a range of O2 concentrations down to nanomolar. Inhibition of respiration by NO was reversible, and complete NO removal recovered cell respiration above its routine reference values. Respiration was observed even at high NO concentrations, and the dependence of IC50 on [O2] exhibits a characteristic but puzzling parabolic shape; both these features imply that CcO is protected from complete inactivation by NO and are likely to be physiologically relevant. We present a kinetic model of CcO inhibition by NO that efficiently predicts experimentally determined respiration at physiological O2 and NO concentrations and under hypoxia, and accurately predicts the respiratory responses under hyperoxia. The model invokes competitive and uncompetitive inhibition by binding of NO to the reduced and oxidized forms of CcO, respectively, and suggests that dissociation of NO from reduced CcO may involve its O2-dependent oxidation. It also explains the non-linear dependence of IC50 on O2 concentration, and the hyperbolic increase of c50 as a function of NO concentration. |
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Keywords: | NO, nitric oxide NOS, NO synthase CcO, cytochrome c oxidase O2, oxygen CN&minus , cyanide CO, carbon monoxide iNOS, inducible NOS DMEM, Dulbecco's modified Eagle's medium Tet-iNOS 293, tetracycline-inducible iNOS-expressing HEK 293 cells S-EITU, S-ethylisothiourea FCCP, carbonylcyanide p-(trifluoromethoxy)phenylhydrazone HBSS, Hanks balanced salt solution HbO2, oxyhemoglobin |
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