Metabolic control of mitochondrial properties by adenine nucleotide translocator determines palmitoyl-CoA effects - Implications for a mechanism linking obesity and type 2 diabetes

被引:41
作者
Ciapaite, Jolita
Bakker, Stephan J. L.
Diamant, Michaela
van Eikenhorst, Gerco
Heine, Robert J.
Westerhoff, Hans V.
Krab, Klaas
机构
[1] Vytautas Magnus Univ, Ctr Environm Res, Fac Nat Sci, LT-44404 Kaunas, Lithuania
[2] Vrije Univ Amsterdam, Dept Mol Cell Physiol, Inst Mol Cell Biol, Fac Earth & Life Sci, Amsterdam, Netherlands
[3] Univ Groningen, Dept Internal Med, Groningen, Netherlands
[4] Univ Groningen, Med Ctr, Groningen, Netherlands
[5] Vrije Univ Amsterdam, Med Ctr, Dept Endocrinol, Inst Cardiovasc Res, Amsterdam, Netherlands
[6] Univ Manchester, Manchester Ctr Integrat Syst Biol, MIB, Manchester, Lancs, England
关键词
metabolic control analysis; oxidative phosphorylation; palmitoyl-CoA; reactive oxygen species; type; 2; diabetes;
D O I
10.1111/j.1742-4658.2006.05523.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
Inhibition of the mitochondrial adenine nucleotide translocator (ANT) by long-chain acyl-CoA esters has been proposed to contribute to cellular dysfunction in obesity and type 2 diabetes by increasing formation of reactive oxygen species and adenosine via effects on the coenzyme Q redox state, mitochondrial membrane potential (Delta psi) and cytosolic ATP concentrations. We here show that 5 mu M palmitoyl-CoA increases the ratio of reduced to oxidized coenzyme Q (QH(2)/Q) by 42 +/- 9%, Delta psi by 13 +/- 1 mV (9%), and the intramitochondrial ATP/ADP ratio by 352 +/- 34%, and decreases the extramitochondrial ATP/ADP ratio by 63 +/- 4% in actively phosphorylating mitochondria. The latter reduction is expected to translate into a 24% higher extramitochondrial AMP concentration. Furthermore, palmitoyl-CoA induced concentration-dependent H2O2 formation, which can only partly be explained by its effect on Delta psi. Although all measured fluxes and intermediate concentrations were affected by palmitoyl-CoA, modular kinetic analysis revealed that this resulted mainly from inhibition of the ANT. Through Metabolic Control Analysis, we then determined to what extent the ANT controls the investigated mitochondrial properties. Under steady-state conditions, the ANT moderately controlled oxygen uptake (control coefficient C = 0.13) and phosphorylation (C = 0.14) flux. It controlled intramitochondrial (C = -0.70) and extramitochondrial ATP/ADP ratios (C = 0.23) more strongly, whereas the control exerted over the QH(2)/Q ratio (C = -0.04) and Delta psi (C = -0.01) was small. Quantitative assessment of the effects of palmitoyl-CoA showed that the mitochondrial properties that were most strongly controlled by the ANT were affected the most. Our observations suggest that long-chain acyl-CoA esters may contribute to cellular dysfunction in obesity and type 2 diabetes through effects on cellular energy metabolism and production of reactive oxygen species.
引用
收藏
页码:5288 / 5302
页数:15
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