Template:Keywords: Coupling control states and rates

From Bioblast

1. Mitochondrial and cellular respiratory rates in coupling-control states

OXPHOS-coupled energy cycles. Source: The Blue Book
Β» Baseline state
Respiratory rate Defining relations Icon
OXPHOS capacity P = PΒ΄-Rox P.jpg mt-preparations
ROUTINE respiration R = RΒ΄-Rox R.jpg living cells
ET capacity E = EΒ΄-Rox E.jpg Β» Level flow
Β» Noncoupled respiration - Uncoupler
LEAK respiration L = LΒ΄-Rox L.jpg Β» Static head
Β» LEAK state with ATP
Β» LEAK state with oligomycin
Β» LEAK state without adenylates
Residual oxygen consumption Rox L = LΒ΄-Rox ROX.jpg
  • Chance and Williams nomenclature: respiratory states
Β» State 1 β€”Β» State 2 β€”Β» State 3 β€”Β» State 4 β€”Β» State 5

2. Flux control ratios related to coupling in mt-preparations and living cells

Β» Flux control ratio
Β» Coupling-control ratio
Β» Coupling-control protocol
FCR Definition Icon
L/P coupling-control ratio L/P L/P coupling-control ratio Β» Respiratory acceptor control ratio, RCR = P/L
L/R coupling-control ratio L/R L/R coupling-control ratio
L/E coupling-control ratio L/E L/E coupling-control ratio Β» Uncoupling-control ratio, UCR = E/L (ambiguous)
P/E control ratio P/E P/E control ratio
R/E control ratio R/E R/E control ratio Β» Uncoupling-control ratio, UCR = E/L
net P/E control ratio (P-L)/E net P/E control ratio
net R/E control ratio (R-L)/E net R/E control ratio

3. Net, excess, and reserve capacities of respiration

Respiratory net rate Definition Icon
P-L net OXPHOS capacity P-L P-L net OXPHOS capacity
R-L net ROUTINE capacity R-L R-L net ROUTINE capacity
E-L net ET capacity E-L E-L net ET capacity
E-P excess capacity E-P E-P excess capacity
E-R reserve capacity E-R E-R reserve capacity

4. Flux control efficiencies related to coupling-control ratios

Β» Flux control efficiency jZ-Y
Β» Background state
Β» Reference state
Β» Metabolic control variable
Coupling-control efficiency Definition Icon Canonical term
P-L control efficiency jP-L = (P-L)/P = 1-L/P P-L control efficiency P-L OXPHOS-flux control efficiency
R-L control efficiency jR-L = (R-L)/R = 1-L/R R-L control efficiency R-L ROUTINE-flux control efficiency
E-L coupling efficiency jE-L = (E-L)/E = 1-L/E E-L coupling efficiency E-L ET-coupling efficiency Β» Biochemical coupling efficiency
E-P control efficiency jE-P = (E-P)/E = 1-P/E E-P control efficiency E-P ET-excess flux control efficiency
E-R control efficiency jE-R = (E-R)/E = 1-R/E E-R control efficiency E-R ET-reserve flux control efficiency

5. General

Β» Basal respiration
Β» Cell ergometry
Β» Dyscoupled respiration
Β» Dyscoupling
Β» Electron leak
Β» Electron-transfer-pathway state
Β» Hyphenation
Β» Oxidative phosphorylation
Β» Oxygen flow
Β» Oxygen flux
Β» Permeabilized cells
Β» Phosphorylation system
Β» Proton leak
Β» Proton slip
Β» Respiratory state
Β» Uncoupling


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