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  • ...acity of the [[phosphorylation system]] exerts a limiting effect on OXPHOS capacity. In addition, ''E-P'' depends on coupling efficiency, since ''P'' aproaches ::::* Expand Bioblast links to '''''E-P'' excess capacity'''
    774 bytes (96 words) - 01:33, 31 December 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:29, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:31, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:31, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:31, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:32, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:31, 12 November 2020
  • #REDIRECT [[E-P excess capacity]]
    33 bytes (4 words) - 01:31, 12 November 2020
  • ...cations]] [[Instrument and method::Oxygraph-2k]] [[Topic::Threshold;excess capacity]] == O2k-Publications: Threshold;excess capacity - Abstracts ==
    1 KB (184 words) - 16:02, 16 April 2018
  • ...ation. Similarly, the apparent [[E-P excess ET capacity |''E-P'' excess ET capacity]] is not a respiratory reserve in the sense of oxidative phosphorylation.
    1 KB (193 words) - 16:32, 13 December 2023
  • ...oupler]] titration, which yields the [[E-P excess capacity |''E-P'' excess capacity]].
    2 KB (288 words) - 18:29, 1 January 2021
  • [[File:EPL-net and excess.jpg|right|300px|thumb|[[Gnaiger 2020 BEC MitoPathways |MitoPathways 2020: F ...OUTINE respiration|ROUTINE-respiration]] [[Image:E.jpg|link=ET capacity|ET capacity]] [[Image:L.jpg|link=LEAK respiration|LEAK respiration]] - [[Image:ROX.jpg|
    2 KB (243 words) - 08:37, 25 November 2023
  • ...L'')/''P'' = 1-''L/P'', only at zero [[E-P excess capacity |''E-P'' excess capacity]], when ''P'' = ''E''). The biochemical coupling efficiency is independent
    901 bytes (110 words) - 01:27, 31 December 2020
  • [[File:EPL-net and excess.jpg|right|300px|thumb|[[Gnaiger 2020 BEC MitoPathways |MitoPatwhays 2020]]] ...r]] [[Image:jExR.jpg|50 px|link=Excess E-R capacity factor |Excess ''E-R'' capacity factor]]
    2 KB (309 words) - 11:37, 22 March 2022
  • ...ome ''c'', which suggests a direct functional role for the apparent excess capacity of cytochrome ''c'' oxidase in hypoxia and under conditions of intracellula |topics=Cyt c, Flux control, Oxygen kinetics, Threshold;excess capacity
    3 KB (341 words) - 21:23, 27 March 2023
  • ...Lemieux H, Schachner T, Blier PU, Tardif J-C, Gnaiger E (2006) High excess capacity of cytochrome ''c'' oxidase in permeabilized fibers of the mouse heart. Bio ...iological temperature of 37 °C with caution only. The very high COX excess capacity under hypothermia (4 °C) may compensate for hypothermic hypoxia by decreas
    3 KB (510 words) - 18:14, 10 January 2022
  • ...und at low temperatures. In macrophage-derived cell lines, both the excess capacity of CIV and the efficiency of sulfide elimination may increase at low temper |topics=Temperature, Threshold;excess capacity
    3 KB (382 words) - 17:29, 4 June 2017
  • ...lhaber S, Elger CE, Kunz WS (2002) Differences in flux control and reserve capacity of cytochrome c oxidase (COX) in human skeletal muscle and brain suggest di ..., a flux control coefficient of COX of 0.12±0.05 and a 3.9±0.6-fold excess capacity of the enzyme. The observed difference in metabolic control can be attribut
    2 KB (243 words) - 15:48, 24 March 2015
  • ...ibits GOT activity, reduced mitochondrial leak respiration, OXPHOS and ETS capacity. These changes were observed with complex-1 linked respiration (substrates
    2 KB (228 words) - 16:01, 30 January 2020
  • ...sought to determine the effect of hypothermia on mitochondrial respiratory capacity and H<sub>2</sub>S-related COX inhibition. We further studied the influence ...ective stimulation of CIV after addition of ascorbate and TMPD. COX excess capacity (% of ET-pathway) was calculated based on the ratio of inhibition of mitoch
    3 KB (463 words) - 14:26, 13 November 2017

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