Literature DB >> 2569473

Elevation of plasma epinephrine concentrations inhibits proteolysis and leucine oxidation in man via beta-adrenergic mechanisms.

M E Kraenzlin1, U Keller, A Keller, A Thélin, M J Arnaud, W Stauffacher.   

Abstract

The role of elevated plasma epinephrine concentrations in the regulation of plasma leucine kinetics and the contribution of beta-receptors were assessed in man. Epinephrine (50 ng/kg per min) was infused either alone or combined with propranolol (beta-blockade) into groups of six subjects fasted overnight; leucine flux, oxidation, and net plasma leucine forearm balance were determined during 180 min. Constant plasma insulin and glucagon concentrations were maintained in all studies by infusing somatostatin combined with insulin and glucagon replacements. Plasma leucine concentrations decreased from baseline during epinephrine infusion by 27 +/- 5 mumol/liter (P less than 0.02) due to a 22 +/- 6% decrease in leucine flux (P less than 0.05 vs. controls receiving saline) and to an increase in the metabolic clearance rate of leucine (P less than 0.02). Leucine oxidation decreased by 36 +/- 8% (P less than 0.01 vs. controls). beta-Blockade abolished the effect of epinephrine on leucine flux and oxidation. Net forearm release of leucine increased during epinephrine (P less than 0.01), suggesting increased muscle proteolysis; the fall of total body leucine flux was therefore due to diminished proteolysis in nonmuscle tissues, such as splanchnic organs. Nonoxidative leucine disappearance as a parameter of protein synthesis was not significantly influenced by epinephrine. Plasma glucose and FFA concentrations increased via beta-adrenergic mechanisms (P less than 0.001). The results suggest that elevation of plasma epinephrine concentrations similar to those observed in severe stress results in redistribution of body proteins and exerts a whole body protein-sparing effect; this may counteract catabolic effects of other hormones during severe stress.

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Year:  1989        PMID: 2569473      PMCID: PMC548895          DOI: 10.1172/JCI114178

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  39 in total

1.  Alanine and glutamine synthesis and release from skeletal muscle. IV. beta-Adrenergic inhibition of amino acid release.

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2.  Simultaneous radioenzymatic determination of plasma and tissue adrenaline, noradrenaline and dopamine within the femtomole range.

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Review 3.  Catecholamines.

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Journal:  N Engl J Med       Date:  1972-08-03       Impact factor: 91.245

4.  Plasma catecholamines and carbohydrate metabolism in patients with acute myocardial infarction.

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5.  Radiochemical assay of long-chain fatty acids using 63Ni as tracer.

Authors:  R J Ho
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6.  Effect of isoproterenol on amino acid levels and protein turnover in skeletal muscle.

Authors:  J B Li; L S Jefferson
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7.  The regulation of plasma ketone body concentration by counter-regulatory hormones in man. III. Effects of norepinephrine in normal man.

Authors:  D S Schade; R P Eaton
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8.  The effect of diabetes, insulin, and the redox potential on leucine metabolism by isolated rat hemidiaphragm.

Authors:  M G Buse; H F Herlong; D A Weigand
Journal:  Endocrinology       Date:  1976-05       Impact factor: 4.736

9.  Glucagon and plasma catecholamine responses to graded and prolonged exercise in man.

Authors:  H Galbo; J J Holst; N J Christensen
Journal:  J Appl Physiol       Date:  1975-01       Impact factor: 3.531

10.  Tracer priming the bicarbonate pool.

Authors:  J R Allsop; R R Wolfe; J F Burke
Journal:  J Appl Physiol Respir Environ Exerc Physiol       Date:  1978-07
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