Difference between revisions of "SUIT-003 O2 ce D009"
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{{MitoPedia | {{MitoPedia | ||
|abbr=CCP_R 1Omy 2U | |abbr=CCP_R 1Omy 2U | ||
|description=[[File:CCP R 1Omy 2U.jpg|150px | |description=[[File:CCP R 1Omy 2U.jpg|150px]] | ||
|info=[[MiPNet08.09 CellRespiration]], [[Huetter 2004 Biochem J]] | |info=[[MiPNet08.09 CellRespiration]], [[Huetter 2004 Biochem J]] | ||
}} | }} |
Revision as of 14:56, 6 September 2016
Description
Abbreviation: CCP_R 1Omy 2U
Reference: MiPNet08.09 CellRespiration, Huetter 2004 Biochem J
MitoPedia concepts:
SUIT protocol
- SUIT-catg: CCP
- SUIT protocol pattern: linear coupling control protocol (CCP)
- Mark names in DatLab: CCP_02
- DatLab-Excel template: CCP_02.xlsx
- The CCP diagram may show the respiratory states directly (left) as an alternative to presenting the titration steps.
- Rot and Ama
- In this CCP, ROX is measured after titration of rotenone, antimycin A, or both in a single step. Validity of using rotenone only for inducing ROX in intact cells is evaluated by stepwise measurement of ROX after titration of rotenone (3Rot) followed by titration of animycin A (4Ama).
CCP_02a
- CCP_R 1Omy 2U 3Rot 4Ama
- Rot and Ama
- In this CCP, ROX is measured after stepwise titration of rotenone (3Rot) and antimycin A (4Ama). In many intact cells ROX measured after titration of rotenone (3Rot) is not or only slightly further inhibited by subsequent titration of animycin A (4Ama).
- Respiration in senescent human primary fibroblasts (0.2×106 cells/ml). Arrows show steps in the titration regime of the coupling control protocol, inducing the following respiratory states: ROUTINE (R; routine state in cell-culture medium); LEAK (L; inhibition of ATPsynthase by 1 μg/ml oligomycin); ETS (E; maximal stimulation by uncoupling of oxidative phosphorylation in four subsequent titrations of the uncoupler, U, FCCP (2.5–4 μM final concentration); ROX (rotenone, Rot, and antimycin A; residual oxygen consumption). Modified after Huetter_2004_Biochem J.
- Hütter E, Renner K, Pfister G, Stöckl P, Jansen-Dürr P, Gnaiger E (2004) Senescence-associated changes in respiration and oxidative phosphorylation in primary human fibroblasts. Biochem J 380:919-28. - »Bioblast link«