Back to Search Start Over

Mitochondrial respiratory states and rates: Building blocks of mitochondrial physiology (Part 1)

Authors :
European Commission
Gnaiger, E.
Ahn, B.
Alves, M. G.
Amati, F.
Aral, C.
Arandarčikaitė, O.
Åsander Frostner, E.
Bailey, David M.
Bastos Sant'Anna Silva, A. C.
Battino, M.
Beard, D. A.
Newsom, S.
Robinson, M. M.
Patel, H. H.
Buettner, G. R.
Pecina, P.
Shevchuk, I.
Pereira da Silva Grilo da Silva, F.
Ben-Shachar, D.
Pesta, D.
Goodpaster, B. H.
Zorzano, Antonio
Petit, P. X.
Pichaud, N.
Pirkmajer, S.
Porter, R. K.
Wagner, B. A.
Pranger, F.
Rohlena, J.
Prochownik, E. V.
Siewiera, K.
Røsland, G. V.
Ehinger, J.
Rossiter, H. B.
Towheed, A.
Rybacka-Mossakowska, J.
Dias, T.
Salvadego, D.
Jansen-Dürr, P.
Scatena, R.
Schartner, M.
Scheibye-Knudsen, Morten
Breton, S.
Cardoso, L.H.D.
Schilling, J. M.
Singer, D.
Schlattner, U.
Brown, R. A.
Sobotka, O.
Spinazzi, M.
Ward, M. L.
Brown, G. C.
Gonzalo, H.
Stankova, P.
Labieniec-Watala, M.
Stier, A.
Stocker, R.
Sumbalova, Zuzana
Doerrier, C.
Suravajhala, P.
Tretter, L.
Tanaka, M.
Duchen, Michael R.
Trivigno, C.
Tronstad, K. J.
Carvalho, Eugenia
Drahota, Z.
Jackson, C. B.
Trougakos, I. P.
Tyrrell, D. J.
Urban, T.
Velika, B.
Gorr, T. A.
Vercesi, A. E.
Watala, C.
Victor, V. M.
Grefte, S.
Wei, Y. H.
Wieckowski, M. R.
O'Gorman, D.
Kucera, O.
Wohlwend, M.
Wolff, J.
Wuest, R.C.I.
Zaugg, K.
Jespersen, N. R.
Zaugg, M.
Casado, Marta
Calabria, E.
Červinková, Zuzana
Chang, S. C.
Radenkovic, F.
Moisoi, N.
Chicco, A. J.
Chinopoulos, C.
Coen, P. M.
Collins, J. L.
Lai, N.
Crisóstomo, L.
Elmer, E.
Davis, M. S.
Han, J.
Endlicher, R.
Pak, Y. K.
Fell, D. A.
Jha, R. K.
Ferko, M.
Nozickova, K.
Ferreira, J.C.B.
Scott, G. R.
Filipovska, A.
Fisar, Z.
Fisher, J.
García-Rovés, Pablo M.
Molina, A.J.A.
Garcia-Souza, L. F.
Harrison, D. K.
Genova, M. L.
Kaambre, T.
Hellgren, K. T.
Hernansanz-Agustín, Pablo
Laner, V.
Holland, O.
Puurand, M.
Hoppel, C. L.
Tepp, K.
Houstek, J.
Hunger, M.
Iglesias-Gonzalez, J.
Oliveira, P. F.
Irving, B. A.
Kane, D. A.
Iyer, S.
Orynbayeva, Z.
Kappler, L.
Karabatsiakis, A.
Montaigne, D.
Oliveira, P. J.
Schoenfeld, P.
Keijer, J.
Keppner, G.
Komlodi, T.
Kopitar-Jerala, N.
Reboredo, P.
Krako Jakovljevic, N.
Larsen, T. S.
Kuang, J.
Renner-Sattler, K.
Lee, H. K.
Lemieux, H.
Bishop, D.
Tandler, B.
Lerfall, J.
Lucchinetti, E.
MacMillan-Crow, L. A.
Makrecka-Kuka, M.
Shabalina, I. G.
Meszaros, A. T.
Moore, A. L.
Michalak, S.
Moreira, B. P.
Mracek, T.
Distefano, G.
Villena, J. A.
Muntané, Jordi
Muntean, D. M.
Murray, A. J.
Nedergaard, J.
Tomar, D.
Nemec, M.
Palmeira, C. M.
European Commission
Gnaiger, E.
Ahn, B.
Alves, M. G.
Amati, F.
Aral, C.
Arandarčikaitė, O.
Åsander Frostner, E.
Bailey, David M.
Bastos Sant'Anna Silva, A. C.
Battino, M.
Beard, D. A.
Newsom, S.
Robinson, M. M.
Patel, H. H.
Buettner, G. R.
Pecina, P.
Shevchuk, I.
Pereira da Silva Grilo da Silva, F.
Ben-Shachar, D.
Pesta, D.
Goodpaster, B. H.
Zorzano, Antonio
Petit, P. X.
Pichaud, N.
Pirkmajer, S.
Porter, R. K.
Wagner, B. A.
Pranger, F.
Rohlena, J.
Prochownik, E. V.
Siewiera, K.
Røsland, G. V.
Ehinger, J.
Rossiter, H. B.
Towheed, A.
Rybacka-Mossakowska, J.
Dias, T.
Salvadego, D.
Jansen-Dürr, P.
Scatena, R.
Schartner, M.
Scheibye-Knudsen, Morten
Breton, S.
Cardoso, L.H.D.
Schilling, J. M.
Singer, D.
Schlattner, U.
Brown, R. A.
Sobotka, O.
Spinazzi, M.
Ward, M. L.
Brown, G. C.
Gonzalo, H.
Stankova, P.
Labieniec-Watala, M.
Stier, A.
Stocker, R.
Sumbalova, Zuzana
Doerrier, C.
Suravajhala, P.
Tretter, L.
Tanaka, M.
Duchen, Michael R.
Trivigno, C.
Tronstad, K. J.
Carvalho, Eugenia
Drahota, Z.
Jackson, C. B.
Trougakos, I. P.
Tyrrell, D. J.
Urban, T.
Velika, B.
Gorr, T. A.
Vercesi, A. E.
Watala, C.
Victor, V. M.
Grefte, S.
Wei, Y. H.
Wieckowski, M. R.
O'Gorman, D.
Kucera, O.
Wohlwend, M.
Wolff, J.
Wuest, R.C.I.
Zaugg, K.
Jespersen, N. R.
Zaugg, M.
Casado, Marta
Calabria, E.
Červinková, Zuzana
Chang, S. C.
Radenkovic, F.
Moisoi, N.
Chicco, A. J.
Chinopoulos, C.
Coen, P. M.
Collins, J. L.
Lai, N.
Crisóstomo, L.
Elmer, E.
Davis, M. S.
Han, J.
Endlicher, R.
Pak, Y. K.
Fell, D. A.
Jha, R. K.
Ferko, M.
Nozickova, K.
Ferreira, J.C.B.
Scott, G. R.
Filipovska, A.
Fisar, Z.
Fisher, J.
García-Rovés, Pablo M.
Molina, A.J.A.
Garcia-Souza, L. F.
Harrison, D. K.
Genova, M. L.
Kaambre, T.
Hellgren, K. T.
Hernansanz-Agustín, Pablo
Laner, V.
Holland, O.
Puurand, M.
Hoppel, C. L.
Tepp, K.
Houstek, J.
Hunger, M.
Iglesias-Gonzalez, J.
Oliveira, P. F.
Irving, B. A.
Kane, D. A.
Iyer, S.
Orynbayeva, Z.
Kappler, L.
Karabatsiakis, A.
Montaigne, D.
Oliveira, P. J.
Schoenfeld, P.
Keijer, J.
Keppner, G.
Komlodi, T.
Kopitar-Jerala, N.
Reboredo, P.
Krako Jakovljevic, N.
Larsen, T. S.
Kuang, J.
Renner-Sattler, K.
Lee, H. K.
Lemieux, H.
Bishop, D.
Tandler, B.
Lerfall, J.
Lucchinetti, E.
MacMillan-Crow, L. A.
Makrecka-Kuka, M.
Shabalina, I. G.
Meszaros, A. T.
Moore, A. L.
Michalak, S.
Moreira, B. P.
Mracek, T.
Distefano, G.
Villena, J. A.
Muntané, Jordi
Muntean, D. M.
Murray, A. J.
Nedergaard, J.
Tomar, D.
Nemec, M.
Palmeira, C. M.
Publication Year :
2018

Abstract

As the knowledge base and importance of mitochondrial physiology to human health expand, the necessity for harmonizing nomenclature concerning mitochondrial respiratory states and rates has become increasingly apparent. Clarity of concept and consistency of nomenclature are key trademarks of a research field. These trademarks facilitate effective transdisciplinary communication, education, and ultimately further discovery. Peter Mitchell’s chemiosmotic theory establishes the link between vectorial and scalar energy transformation and coupling in oxidative phosphorylation. The unifying concept of the protonmotive force provides the framework for developing a consistent theory and nomenclature for mitochondrial physiology and bioenergetics. Herein, we follow IUPAC guidelines on general terms of physical chemistry, extended by considerations on open systems and irreversible thermodynamics. We align the nomenclature and symbols of classical bioenergetics with a concept-driven constructive terminology to express the meaning of each quantity clearly and consistently. In this position statement, in the frame of COST Action MitoEAGLE, we endeavour to provide a balanced view on mitochondrial respiratory control and a critical discussion on reporting data of mitochondrial respiration in terms of metabolic flows and fluxes. Uniform standards for evaluation of respiratory states and rates will ultimately support the development of databases of mitochondrial respiratory function in species, tissues, and cells.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1257714599
Document Type :
Electronic Resource