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- 31 bytes (3 words) - 15:46, 3 June 2020
- ...an style="font-size:105%; color:##424242">'''Β»Abstracts: S-pathway control state'''</span>875 bytes (115 words) - 10:41, 12 January 2019
- ...style="font-size:105%; color:##424242"> '''Publications: S-pathway control state''' - >>>>>>> - Click on [Expand] or [Collapse] - >>>>>>></span>1,006 bytes (131 words) - 08:40, 5 March 2020
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- ::::::Β» [[Coupling control state]] ::::::Β» [[Fatty acid oxidation pathway control state]], F1 KB (145 words) - 14:35, 26 August 2020
- ...action of the [[fatty acid |F-pathway]], [[NADH electron transfer-pathway state |N-pathway]], and [[succinate |S-pathway]], with convergent electron flow i297 bytes (39 words) - 09:39, 13 November 2020
- ...ory stimulation by simultaneous action of [[NADH Electron transfer-pathway state |type N substrates]] (N), [[succinate]] (S), and [[Glycerophosphate |glycer249 bytes (30 words) - 13:56, 12 April 2023
- ...are designed to measure simultaneously O<sub>2</sub> flux and the Q-redox state in isolated mitochondria and permeabilized cells.444 bytes (65 words) - 12:01, 2 December 2021
- ...imultaneous action of [[fatty acid]] (F), [[NADH Electron transfer-pathway state |type N substrates]] (N), [[succinate]] (S), and [[Glycerophosphate |glycer270 bytes (33 words) - 19:18, 18 February 2019
- ...are designed to measure simultaneously O<sub>2</sub> flux and the Q-redox state in isolated mitochondria and permeabilized cells.524 bytes (76 words) - 12:01, 2 December 2021
- ::::Β» [[Q-redox state]] ::::Β» [[Electron-transfer-pathway state]]2 KB (135 words) - 10:18, 3 April 2021
- ...s to be determined. Uncoupler increases the respiration and induces the ET state. Antimycin A (Ama), which is an inhibitor of Complex III), blocks the respi1 KB (164 words) - 09:03, 22 July 2019
- ...small amounts to avoid overtitration and inhibition of the flux in the ET-state. The Complex III inhibitor Antimycin A (Ama) blocks the respiration.1 KB (167 words) - 09:01, 22 July 2019
- ...r-pathway state| N-]] and [[NS-pathway control state| NS-pathway]] control state in mitochondrial preparations. It can serve as a diagnostic tool for the ac ...f the ATP synthase. Since higher concentrations of Omy can decrease the ET state induced upon addition of uncoupler, the required concentration of Omy has t2 KB (232 words) - 14:08, 6 September 2021
- ...of substrates for the [[N-pathway control state]] and [[S-pathway control state]] through Complexes [[CI]] and [[CII]] simultaneously into the [[Q-junction1 KB (149 words) - 18:49, 1 January 2021
- [[File:SUIT-catg FNSGp.jpg|right|200px|link=Electron-transfer-pathway state|Electron-transfer-pathway states]] ::::Β» MitoPedia: '''[[S-pathway control state]]'''1 KB (190 words) - 10:02, 3 June 2020
- ...rotenone]], which also inhibits the [[Fatty acid oxidation pathway control state| F-pathway]].169 bytes (21 words) - 09:41, 13 November 2020
- ...OS]], [[Electron transfer pathway]]), numerous [[Electron-transfer-pathway state]]s are possible. ...h variable [[N]]-linked injuries are studied. In contrast, the [[reference state]], ''Z'', is strictly defined for [[flux control efficiency]].1 KB (206 words) - 12:20, 25 November 2020
- ::: [[Electron-transfer-pathway state]] has been accessed more than2 KB (268 words) - 09:58, 3 June 2020
- ..., S(Rot) or S. Then the NS-S pathway control efficiency in the ET-coupling state is ...pe N substrate combination. Experimentally rotenone Rot is added to the NS-state. The reversed protocol, adding N-substrates to a S-pathway control backgrou2 KB (288 words) - 18:30, 1 January 2021
- ! Respiratory state ...f respiration. Mitochondria of dead cells (dce) without substrate are in a state of ROX.1 KB (216 words) - 09:44, 3 June 2020
- ...nt), but if the compound adjective follows the term (measurement at steady state), hyphenation does not add any information and should be avoided. Find more ...ate]] (''NOT'' 'Coupling control state' - it is not 'coupling of a control state')4 KB (469 words) - 02:31, 23 January 2023
- ...alonic acid]]). In the N-pathway control state [[Electron-transfer-pathway state|ET pathway level 4]] is active. |info=[[Electron-transfer-pathway state]], [[Gnaiger 2020 BEC MitoPathways]]3 KB (409 words) - 08:06, 25 November 2023
- ...nd ''E'' as subscripts attached to the abbreviation of the pathway control state. ::::* [[N-pathway control state]] N<sub>''L''</sub>, N<sub>''P''</sub>, N<sub>''E''</sub>2 KB (340 words) - 16:40, 6 July 2023