Inverse relationship between protein intake and plasma free amino acids in healthy men at physical exercise

Author:

Forslund Anders H.1,Hambræus Leif1,van Beurden Hugo1,Holmbäck Ulf1,El-Khoury Antoine E.2,Hjorth Gunilla1,Olsson Roger1,Stridsberg Mats1,Wide Leif1,Åkerfeldt Torbjörn1,Regan Meredith2,Young Vernon R.2

Affiliation:

1. Department of Medical Sciences, Nutrition and Clinical Chemistry, Uppsala University, SE-75237 Uppsala, Sweden; and

2. Laboratory of Human Nutrition, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139

Abstract

The effect of a “normal” ( n = 8) and “high” ( n = 6) protein intake (1 and 2.5 g ⋅ kg 1 ⋅ day 1, respectively) and of exercise on plasma amino acid (AA) concentrations, insulin, and glucagon concentrations was followed throughout a continuous 24-h period in adult male subjects at energy balance after six days on a standardized diet and exercise program. Subjects were fasting from 2100 on day 6 to 1200 on day 7 and then fed 10 identical meals hourly until 2100. Physical exercise was performed (46% maximal oxygen uptake) between 0830 and 1000 (fasting) and in a fed state (1600–1730) on each day. The normal-protein group showed fasting plasma AA concentrations that were higher ( P < 0.05) than those for the high-protein group, except for leucine, methionine, and tyrosine. Glutamine, glycine, alanine, taurine, and threonine concentrations were distinctly higher (∼30% or greater) throughout the 24-h period in subjects consuming the normal- vs. the high-protein diets. Exercise appeared to increase, although not profoundly, the plasma concentrations of amino acids except for glutamate, histidine, ornithine, and tryptophan. The profound diet-related differences in plasma AA concentrations are only partially explained by differences in the renal clearance of the amino acids. We speculate on the possible metabolic basis for these findings.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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