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1.
Arch Biochem Biophys ; 669: 39-49, 2019 07 15.
Artículo en Inglés | MEDLINE | ID: mdl-31128085

RESUMEN

To enhance our understanding of the control of archaeal carbon central metabolism, a detailed analysis of the regulation mechanisms of both fructose1,6-bisphosphatase (FruBPase) and ADP-phosphofructokinase-1 (ADP-PFK1) was carried out in the methanogen Methanosarcina acetivorans. No correlations were found among the transcript levels of the MA_1152 and MA_3563 (frubpase type II and pfk1) genes, the FruBPase and ADP-PFK1 activities, and their protein contents. The kinetics of the recombinant FruBPase II and ADP-PFK1 were hyperbolic and showed simple mixed-type inhibition by AMP and ATP, respectively. Under physiological metabolite concentrations, the FruBPase II and ADP-PFK1 activities were strongly modulated by their inhibitors. To assess whether these enzymes were also regulated by a phosphorylation/dephosphorylation process, the recombinant enzymes and cytosolic-enriched fractions were incubated in the presence of commercial protein phosphatase or protein kinase. De-phosphorylation of ADP-PFK1 slightly decreased its activity (i.e. Vmax) and did not change its kinetic parameters and oligomeric state. Thus, the data indicated a predominant metabolic regulation of both FruBPase and ADP-PFK1 activities by adenine nucleotides and suggested high degrees of control on the respective pathway fluxes.


Asunto(s)
Proteínas Arqueales/metabolismo , Fructosa-Bifosfatasa/metabolismo , Methanosarcina/metabolismo , Fosfofructoquinasa-1/metabolismo , Adenosina Difosfato/metabolismo , Adenosina Monofosfato/metabolismo , Adenosina Trifosfato/metabolismo , Animales , Proteínas Arqueales/genética , Proteínas Arqueales/aislamiento & purificación , Pollos , Fructosa-Bifosfatasa/genética , Fructosa-Bifosfatasa/aislamiento & purificación , Fructosafosfatos/metabolismo , Genes Arqueales , Cinética , Methanosarcina/genética , Fosfofructoquinasa-1/genética , Fosfofructoquinasa-1/aislamiento & purificación , Fosforilación , Inhibidores de Proteínas Quinasas/metabolismo , Procesamiento Proteico-Postraduccional
2.
Biochim Biophys Acta Bioenerg ; 1860(8): 618-627, 2019 08 01.
Artículo en Inglés | MEDLINE | ID: mdl-31251900

RESUMEN

Ustilago maydis is an aerobic basidiomycete that depends on oxidative phosphorylation for its ATP supply, pointing to the mitochondrion as a key player in its energy metabolism. Mitochondrial respiratory complexes I, III2, and IV occur in supramolecular structures named respirasome. In this work, we characterized the subunit composition and the kinetics of NADH:Q oxidoreductase activity of the digitonine-solubilized respirasome (1600 kDa) and the free-complex I (990 kDa). In the presence of 2,6-dimethoxy-1,4-benzoquinone (DBQ) and cytochrome c, both the respirasome NADH:O2 and the NADH:DBQ oxidoreductase activities were inhibited by rotenone, antimycin A or cyanide. A value of 2.4 for the NADH oxidized/oxygen reduced ratio was determined for the respirasome activity, while ROS production was less than 0.001% of the oxygen consumption rate. Analysis of the NADH:DBQ oxidoreductase activity showed that respirasome was 3-times more active and showed higher affinity than free-complex I. The results suggest that the contacts between complexes I, III2 and IV in the respirasome increase the catalytic efficiency of complex I and regulate its activity to prevent ROS production.


Asunto(s)
Proteínas del Complejo de Cadena de Transporte de Electrón/química , Mitocondrias/enzimología , NADH Deshidrogenasa/metabolismo , Ustilago/enzimología , Basidiomycota , Proteínas del Complejo de Cadena de Transporte de Electrón/metabolismo , Complejo I de Transporte de Electrón/metabolismo , Complejo III de Transporte de Electrones/metabolismo , Complejo IV de Transporte de Electrones/metabolismo , Mitocondrias/metabolismo , Oxidación-Reducción , Fosforilación Oxidativa , Especies Reactivas de Oxígeno/antagonistas & inhibidores , Ustilago/metabolismo
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