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1.
Physiol Biochem Zool ; 74(2): 261-72, 2001.
Artigo em Inglês | MEDLINE | ID: mdl-11247745

RESUMO

Although the majority of the sea lamprey's (Petromyzon marinus) life cycle is spent as a burrow-dwelling larva, or ammocoete, surprisingly little is known about intermediary metabolism in this stage of the lamprey's life history. In this study, larval sea lampreys (ammocoetes) were vigorously exercised for 5 min, and their patterns of metabolic fuel depletion and replenishment and oxygen consumption, along with measurements of net whole-body acid and ion movements, were followed during a 4-24-h postexercise recovery period. Exercise led to initial five- to sixfold increases in postexercise oxygen consumption, which remained significantly elevated by 1.5-2.0 times for the next 3 h. Exercise also led to initial 55% drops in whole-body phosphocreatine, which was restored by 0.5 h, but no significant changes in whole-body adenosine triphosphate were observed. Whole-body glycogen concentrations dropped by 70% immediately following exercise and were accompanied by a simultaneous ninefold increase in lactate. Glycogen and lactate were quickly restored to resting levels after 0.5 and 2.0 h, respectively. The presence of an associated metabolic acidosis was supported by very high rates of metabolic acid excretion, which approached 1,000 nmol g(-1) during the first 2 h of postexercise recovery. Exercise-induced ion imbalances were also rapidly alleviated, as initially high rates of net Na(+) and Cl(-) loss (-1,200 nmol g(-1) h(-1) and -1,800 nmol g(-1) h(-1), respectively) were corrected within 1-2 h. Although larval sea lampreys spend most of their time burrowed, they are adept at performing and recovering from vigorous anaerobic exercise. Such attributes could be important when these animals are vigorously swimming or burrowing as they evade predators or forage.


Assuntos
Metabolismo Energético/fisiologia , Lampreias/fisiologia , Esforço Físico/fisiologia , Equilíbrio Ácido-Base , Animais , Glicogênio/metabolismo , L-Lactato Desidrogenase/metabolismo , Ácido Láctico/metabolismo , Larva/fisiologia , Consumo de Oxigênio , Ácido Pirúvico/metabolismo
2.
Comp Biochem Physiol B Biochem Mol Biol ; 125(3): 347-57, 2000 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-10818268

RESUMO

Fatty acid binding protein was purified from skeletal muscle of the spadefoot toad (Scaphiopus couchii), an estivating species. While estivating, this animal relies on the fatty acid oxidation for energy. Hence we were interested in the behaviour of fatty acid binding protein under conditions of elevated urea (up to 200 mM) and potassium chloride such as exist during estivation. Also we examined whether there were interactions between glycolytic intermediates and the binding ability of the protein. The amount of bound fatty acid (a fluorescence assay using cis-parinarate) was not affected (P < 0.05) by glucose, fructose 6-phosphate or phosphoenolpyruvate at physiological concentrations. By contrast, glucose 6-phosphate increased the amount of bound cis-parinarate but the apparent dissociation constant was not different from the control. Fructose 1,6-bisphosphate but not fructose 2,6-phosphate decreased cis-parinarate binding by 40%, commensurate with doubling the apparent dissociation constant (1.15-2.62 microM). Urea, guanidinium and trimethylamine N-oxide at 200 mM increased cis-parinarate binding 60% over controls. Urea (1 M) and KCl (200 mM) did not affect cis-parinarate binding compared to controls. The interaction of this fatty acid transporter with fructose 1,6-bisphosphate is discussed in terms of reciprocal interaction with phosphofructokinase since fatty acid is also an inhibitor of phosphofructokinase.


Assuntos
Anuros/fisiologia , Proteínas de Transporte/metabolismo , Ácidos Graxos/metabolismo , Proteínas Musculares/metabolismo , Proteínas de Neoplasias , Animais , Proteínas de Transporte/química , Proteínas de Transporte/isolamento & purificação , Estivação/fisiologia , Proteínas de Ligação a Ácido Graxo , Corantes Fluorescentes , Glucose/farmacologia , Glicólise , Hexosefosfatos/farmacologia , Cinética , Proteínas Musculares/química , Proteínas Musculares/isolamento & purificação , Ácido Oleico/farmacologia , Concentração Osmolar , Fosfoenolpiruvato/farmacologia , Ligação Proteica/efeitos dos fármacos , Ureia/metabolismo
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