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Effects of amino acid excess on metabolism

Published online by Cambridge University Press:  28 February 2007

H. N. Munro
Affiliation:
Institute of Biochemistry, University of Glasgow
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Abstract

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Type
Amino Acid Imbalance
Copyright
Copyright © The Nutrition Society 1965

References

Barak, A. J., Humoller, F. L., Mahler, D. J. & Holthaus, J. M. (1962). Gastroenterology, 43, 35.CrossRefGoogle Scholar
Bearn, A. G. & Kunkel, H. G. (1954). J. clin. Invest. 33, 400.CrossRefGoogle Scholar
Clark, C. M., Naismith, D. J. & Munro, H. N. (1957). Biochim. biophys. Acta, 23, 587.CrossRefGoogle Scholar
Feigelson, P. & Feigelson, M. (1963). J. biol. Chem. 238, 1073.CrossRefGoogle Scholar
Goodlad, G. A. J. & Munro, H. N. (1959). Biochem. J. 73, 343.CrossRefGoogle Scholar
Góth, A., Lengyel, L., Bencze, E., Sávely, C. & Majsay, A. (1955). Experientia, 11, 27.CrossRefGoogle Scholar
Góth, A., Nadásdi, N. & Stadler, E. (1958). Z. Vitam.-Harm.- u. Ferrnentforsch. 9, 184.Google Scholar
Gullino, P., Winitz, M., Birnbaum, S. M., Cornfield, J., Otey, M. C. & Greenstein, J. P. (1956). Arch. Biochem. Biophys. 64, 319.CrossRefGoogle Scholar
Harper, A. E. (1964). In Mammalian Protein Metabolism. Vol. 2, p. 87. [Munro, H. N. and Allison, J. B., editors.] New York: Academic Press Inc.CrossRefGoogle Scholar
Harris, M. M. & Lang, B. (1952). Proc. Soc. exp. Biol., N.Y., 80, 664.CrossRefGoogle Scholar
Iber, F. L., Chalmers, T. C. & Uzman, L. L. (1957). Metabolism, 6, 388.Google ScholarPubMed
Knox, W. E. (1951). Brit. J. exp. Path. 32, 462.Google Scholar
Lundsgaard, E. (1930). Biochem. Z. 217, 147.Google Scholar
Matthews, W. B., Milne, M. D. & Bell, M. (1952). Quart. J. Med. N.S. 21, 425.Google Scholar
Munro, H. N. & Clark, C. M. (1959). Biochim. biophys. Acta, 33, 551.CrossRefGoogle Scholar
Munro, H. N. & Mukerji, D. (1958). Biochem. J. 69, 321.CrossRefGoogle Scholar
Munro, H. N. & Mukerji, D. (1962 a). Brit. J. Nutr. 16, 257.CrossRefGoogle Scholar
Munro, H. N. & Mukerji, D. (1962 b). Biochem. J. 82, 520.CrossRefGoogle Scholar
Munro, H. N., Steele, M. H. & Hutchison, W. C. (1963). Nature, Land., 199, 1182.CrossRefGoogle Scholar
Munro, H. N., Steele, M. H. & Hutchison, W. C. (1965). Brit. J. Nutr. 19, 137.CrossRefGoogle Scholar
Nathans, D., Fahey, J. L. & Ship, A. G. (1958). J. Lab. clin. Med. 51, 124.Google Scholar
Schweizer, W. (1947). J. Physiol. 106, 167.CrossRefGoogle Scholar
Snyderman, S. E. (1965). In Significance of Changes in Plasma Amino Acid Patterns. [Leathem, J. H., editor.] New Brunswick, N J: Rutgers University Press. (In the Press.)Google Scholar
Steger, J. & Steger, R. (1954). Dtsch. Z. Nervenheilk. 172, 321.CrossRefGoogle Scholar
Todd, W. R. & Allen, M. (1958). Amer. J. Physiol. 195, 643.CrossRefGoogle Scholar
Todd, W. R., Barnes, J. M. & Cunningham, L. (1947). Arch. Biochem. 13, 261.Google Scholar
Vartiainen, I. & Apajalahti, J. (1953). J. clin. Endocrin. 13, 1502.CrossRefGoogle Scholar