Difference between revisions of "E-P excess capacity"
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{{MitoPedia | {{MitoPedia | ||
|abbr=''ExP'' | |abbr=''ExP'' | ||
|description=[[ | |description=[[Image:EPL-free and excess.jpg|left|240px|thumb|file=Gnaiger_2014_MitoPathways|Blue Book 2014: Fig. 2.4.]] | ||
The '''ETS excess capacity''', ''ExP'', is the difference of the [[ETS capacity]] and [[OXPHOS capacity]], ''ExP'' = ''E-P''. At ''ExP'' > 0, the capacity of the [[phosphorylation system]] exerts a limiting effect on OXPHOS capacity. In addition, ''ExP'' depends on coupling efficiency, since ''P'' approaches ''E'' at increasing uncoupling. | The '''ETS excess capacity''', ''ExP'', is the difference of the [[ETS capacity]] and [[OXPHOS capacity]], ''ExP'' = ''E-P''. At ''ExP'' > 0, the capacity of the [[phosphorylation system]] exerts a limiting effect on OXPHOS capacity. In addition, ''ExP'' depends on coupling efficiency, since ''P'' approaches ''E'' at increasing uncoupling. | ||
|info=[[Gnaiger 2014 MitoPathways]] | |info=[[Gnaiger 2014 MitoPathways]] |
Revision as of 16:09, 17 January 2015
Description
The ETS excess capacity, ExP, is the difference of the ETS capacity and OXPHOS capacity, ExP = E-P. At ExP > 0, the capacity of the phosphorylation system exerts a limiting effect on OXPHOS capacity. In addition, ExP depends on coupling efficiency, since P approaches E at increasing uncoupling.
Abbreviation: ExP
Reference: Gnaiger 2014 MitoPathways
MitoPedia methods:
Respirometry
MitoPedia topics: "Respiratory state" 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 state"Respiratory state" 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.
Related terms in Bioblast
OXPHOS, P
ROUTINE, R
ETS, E
LEAK, L
ROX, R
- Free OXPHOS capacity, βP = P-L
- Free ROUTINE activity, βR = R-L
- Free ETS capacity, βE = E-L
- ETS excess capacity, E-P, ExP = E-P
- ETS excess capacity, E-R, ExR = E-R