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Coupling-control ratio

From Bioblast


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Coupling-control ratio

Description

Coupling control ratios, CCR, are flux control ratios, FCR, at a constant mitochondrial substrate state. In mitochondrial preparations, there are three well-defined coupling states of respiration, L, P, E (LEAK, OXPHOS, ETS). In intact cells, state P cannot be induced, but a ROUTINE state of respiration, R, can be measured. The reference state, Jref, is defined by taking Jref as the maximum flux, i.e. flux in the ETS state, E, such that the lower and upper limits of CCR are defined as 0.0 and 1.0. Then there are two mitochondrial CCR, L/E and P/E, and two CCR for intact cells, L/E and R/E.

Abbreviation: CCR

Reference: Flux control ratio


MitoPedia methods: Respirometry 


MitoPedia topics: "Respiratory control ratio" is not in the list (Enzyme, Medium, Inhibitor, Substrate and metabolite, Uncoupler, Sample preparation, Permeabilization agent, EAGLE, MitoGlobal Organizations, MitoGlobal Centres, ...) of allowed values for the "MitoPedia topic" property. Respiratory control ratio"Respiratory control ratio" is not in the list (Enzyme, Medium, Inhibitor, Substrate and metabolite, Uncoupler, Sample preparation, Permeabilization agent, EAGLE, MitoGlobal Organizations, MitoGlobal Centres, ...) of allowed values for the "MitoPedia topic" property. 

Blue Book 2014: Fig. 2.4.

Coupling control ratios related to free capacities

Free OXPHOS capacity, β‰ˆP = P-L; OXPHOS coupling efficiency, jβ‰ˆP = (β‰ˆP)/P = 1-L/P
Free ROUTINE activity, β‰ˆR = R-L; ROUTINE coupling efficiency, jβ‰ˆR = (β‰ˆR)/R = 1-L/R
Free ETS capacity, β‰ˆE = E-L; ETS coupling efficiency, jβ‰ˆE = (β‰ˆE)/E = 1-L/E
Free OXPHOS capacity, β‰ˆP = P-L
Free ROUTINE activity, β‰ˆR = R-L

Coupling control ratios related to excess capacities

Excess E-P capacity, ExP = E-P; Excess E-P capacity factor, jExP = (ExP)/E = 1-P/E
Excess E-R capacity, ExR = E-R; Excess E-R capacity factor, jExR = (ExR)/E = 1-R/E

Compare

Β» Coupling control factor, CCF