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Action of growth hormone in vitro on the net uptake and incorporation into protein of amino acids in muscle from intact rabbits given protein-deficient diets

Published online by Cambridge University Press:  25 March 2008

M. R. Turner
Affiliation:
Department of Physiology and Biochemistry, The University, SouthamptonSO9 3TU
P. J. Reeds
Affiliation:
Department of Physiology and Biochemistry, The University, SouthamptonSO9 3TU
K. A. Munday
Affiliation:
Department of Physiology and Biochemistry, The University, SouthamptonSO9 3TU
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Abstract

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1. Net amino acid uptake, and incorporation into protein have been measured in vitro in the presence and absence of porcine growth hormone (GH) in muscle from intact rabbits fed for 5 d on low-protein (LP), protein-free (PF) or control diets.

2. In muscle from control and LP animals GH had no effect on the net amino acid uptake but stimulated amino acid incorporation into protein, although this response was less in LP animals than in control animals.

3. In muscle from PF animals, GH stimulated both amino acid incorporation into protein and the net amino acid uptake, a type of response which also occurs in hypophysectomized animals. The magnitude of the effect of GH on the incorporation of amino acids into protein was reduced in muscle from PF animals.

4. The effect of GH on the net amino acid uptake in PF animals was completely blocked by cycloheximide; the uptake effect of GH in these animals was dependent therefore on de novo protein synthesis.

5. It is proposed that in the adult the role of growth hormone in protein metabolism is to sustain cellular protein synthesis when there is a decrease in the level of substrate amino acids, similar to that which occurs during a short-term fast or when the dietary protein intake is inadequate.

Type
Papers of direct relevance to Clinical and Human Nutrition
Copyright
Copyright © The Nutrition Society 1976

References

Allen, K. A., Munday, K. A. & Turner, M. R. (1974 a). Proc. Nutr. Soc. 33, 112A.Google Scholar
Allen, K. A., Munday, K. A. & Turner, M. R. (1974 b). Proc. Nutr. Soc. 33, 113A.Google Scholar
Beas, F., Contreras, I., Maccioni, A. & Arenas, S. (1971). Br. J. Nutr. 16, 169.CrossRefGoogle Scholar
Clemens, M. J. & Korner, A. (1970). Biochem.J. 119, 629.CrossRefGoogle Scholar
Hjalmarson, A. (1968). Acta endocr., Copenh. 57, Suppl. 126, 37.Google Scholar
Jones, J. H. & Foster, C. (1942). J. Nutr. 24, 245.CrossRefGoogle Scholar
Knobil, E. (1966). Physiologist, Wash. 9, 25.Google Scholar
Kostyo, J. L. (1964). Endocrinology 75, 113.CrossRefGoogle Scholar
Kostyo, J. L. (1968). Ann. N. Y. Acad. Sci. 148, 389.CrossRefGoogle Scholar
Kostyo, J. L. & Knobil, E. (1959). Endocrinology 65, 395.CrossRefGoogle Scholar
Kostyo, J. L. & Rillema, J. A. (1971). Endocrinology 88, 1054.CrossRefGoogle Scholar
Manchester, K. L. & Young, F. G. (1961). Vitam Horm. 19, 95.CrossRefGoogle Scholar
Milner, R. D. G. (1971). Pediat. Res. 5, 33.CrossRefGoogle Scholar
Pimstone, B. L., Barbezat, G., Hansen, J. D. L. & Murray, P. (1968). Am. J. clin. Nutr. 21, 482.CrossRefGoogle Scholar
Reeds, P. J. (1972). Effects of insulin and growth hormone on amino acid utilization in muscle. PhD Thesis, University of Southampton.Google Scholar
Reeds, P. J., Munday, K. A. & Turner, M. R. (1971). Biochem. J. 125, 515.CrossRefGoogle Scholar
Russell, J. A. (1951). Endocrinology 49, 99.CrossRefGoogle Scholar
Turner, M. R. (1972). Proc. Nutr. Soc. 31, 205.CrossRefGoogle Scholar
Turner, M. R., Allen, K. A. & Munday, K. A. (1974). Proc. Nutr. Soc. 33, 56A.Google Scholar
Turner, M. R., Reeds, P. J. & Munday, K. A. (1971). Excerpta med. int. Congr. ser. no. 236: Proc. 2nd int. Symp. Growth Hormone, p. 40.Google Scholar
Uthne, K. (1973). Acta endocr., Copenh. 73, Suppl.175.Google Scholar