CHARACTERIZATION OF THE CONTROL OF RESPIRATION IN POTATO-TUBER MITOCHONDRIA USING THE TOP-DOWN APPROACH OF METABOLIC CONTROL ANALYSIS

被引:42
作者
KESSELER, A
DIOLEZ, P
BRINKMANN, K
BRAND, MD
机构
[1] UNIV CAMBRIDGE,DEPT BIOCHEM,TENNIS COURT RD,CAMBRIDGE CB2 1QW,ENGLAND
[2] UNIV BONN,INST BOT,EXPTL OKOL ABT,W-5300 BONN,GERMANY
[3] CNRS,UPR 39,F-91190 GIF SUR YVETTE,FRANCE
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1992年 / 210卷 / 03期
关键词
D O I
10.1111/j.1432-1033.1992.tb17480.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Control over oxidative phosphorylation by purified potato mitochondria was determined using the top-down approach of metabolic control analysis. The control over the respiration rate, phosphorylation rate, proton-leak rate and proton motive force exerted by the respiratory chain, phosphorylation reactions and the proton leak were measured over a range of phosphorylation rates from resting (state 4) to maximal (state 3). These rates were obtained by adding different amounts of hexokinase in the presence of glucose, or different amounts of oligomycin in the presence of ADP. The respiratory substrate was NADH or succinate, both of which feed electrons directly to ubiquinone. The rate of oxygen consumption by the alternative oxidase pathway was negligible with NADH as substrate but was measurable with succinate and was subtracted. Control over the respiration rate in potato mitochondria was predominantly exerted by the respiratory chain at all rates except close to state 4, where control by the proton leak was equally or more important. For oxidation of NADH, the flux control coefficient over the respiration rate exerted by the respiratory chain in state 3 was between 0.8 and 1.0, while in state 4, control over the respiration rate was shared about equally between the chain and the proton leak. The control over the phosphorylation rate was predominantly exerted by the respiratory chain, although at low rates control by the phosphorylation system was also important. For oxidation of NADH, the flux control coefficient over the phosphorylation rate exerted by the respiratory chain in state 3 was 0.8 - 1.0, while near state 4 the flux control coefficients over the phosphorylation rate were about 0.8 for the phosphorylation system and 0.25 for the chain. Control over the proton leak rate was shared between the respiratory chain and the proton leak; the phosphorylation system had negative control. For oxidation of NADH, the flux control coefficients over the leak rate in state 3 were 1.0 for the leak, 0.4 for the chain and -0.4 for the phosphorylation system, while in state 4 the flux control coefficients over leak rate were about 0.5 for the leak and 0.5 for the chain. Control over the magnitude of the protonmotive force was small, between -0.2 and + 0.2, reflecting the way the system operates to keep the protonmotive force fairly constant; the respiratory chain and the phosphorylation system had equal and opposite control and there was very little control by the proton leak except near state 4.
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页码:775 / 784
页数:10
相关论文
共 46 条
[1]  
BRAND MD, 1988, BIOCHEM J, V255, P535
[2]   CONTROL OF ELECTRON FLUX THROUGH THE RESPIRATORY-CHAIN IN MITOCHONDRIA AND CELLS [J].
BRAND, MD ;
MURPHY, MP .
BIOLOGICAL REVIEWS, 1987, 62 (02) :141-193
[3]   THE PROTON LEAK ACROSS THE MITOCHONDRIAL INNER MEMBRANE [J].
BRAND, MD .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1018 (2-3) :128-133
[4]  
BRAND MD, 1992, EBEC7 REP, P64
[5]   A TOP-DOWN APPROACH TO THE DETERMINATION OF CONTROL COEFFICIENTS IN METABOLIC CONTROL-THEORY [J].
BROWN, GC ;
HAFNER, RP ;
BRAND, MD .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 188 (02) :321-325
[6]   THERMODYNAMIC CONTROL OF ELECTRON FLUX THROUGH MITOCHONDRIAL CYTOCHROME BC1 COMPLEX [J].
BROWN, GC ;
BRAND, MD .
BIOCHEMICAL JOURNAL, 1985, 225 (02) :399-405
[7]   CONTROL OF RESPIRATION AND OXIDATIVE-PHOSPHORYLATION IN ISOLATED RAT-LIVER CELLS [J].
BROWN, GC ;
LAKINTHOMAS, PL ;
BRAND, MD .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 192 (02) :355-362
[8]   PROTON-ELECTRON STOICHIOMETRY OF MITOCHONDRIAL COMPLEX-I ESTIMATED FROM THE EQUILIBRIUM THERMODYNAMIC FORCE RATIO [J].
BROWN, GC ;
BRAND, MD .
BIOCHEMICAL JOURNAL, 1988, 252 (02) :473-479
[9]   ADENYLATE CONTROL OF RESPIRATION IN PLANTS - THE CONTRIBUTION OF ROTENONE-INSENSITIVE ELECTRON-TRANSPORT TO ADP-LIMITED OXYGEN-CONSUMPTION BY SOYBEAN MITOCHONDRIA [J].
BRYCE, JH ;
AZCONBIETO, J ;
WISKICH, JT ;
DAY, DA .
PHYSIOLOGIA PLANTARUM, 1990, 78 (01) :105-111
[10]   REGULATION OF ALTERNATIVE PATHWAY ACTIVITY IN PLANT-MITOCHONDRIA - DEVIATIONS FROM Q-POOL BEHAVIOR DURING OXIDATION OF NADH AND QUINOLS [J].
DAY, DA ;
DRY, IB ;
SOOLE, KL ;
WISKICH, JT ;
MOORE, AL .
PLANT PHYSIOLOGY, 1991, 95 (03) :948-953