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Original Article

Studies of renal urea cycle enzymes. I. Renal concentrating ability and urea cycle enzymes in the rat during protein deprivation

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Pages 329-336 | Received 09 Dec 1977, Accepted 20 Dec 1978, Published online: 08 Jul 2009

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Neil R. McGregor, Christopher W. Armstrong, Donald P. Lewis, Henry L. Butt & Paul R. Gooley. (2016) Widespread pain and altered renal function in ME/CFS patients. Fatigue: Biomedicine, Health & Behavior 4:3, pages 132-145.
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K. Snellman, A. Aperia & O. Broberger. (1979) Studies of renal urea cycle enzymes. II. Human renal arginase activity and location of the adaptive changes of renal arginase in the protein deprived rat. Scandinavian Journal of Clinical and Laboratory Investigation 39:4, pages 337-342.
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Marcel CG van de Poll, Peter B Soeters, Nicolaas EP Deutz, Kenneth CH Fearon & Cornelis HC Dejong. (2004) Renal metabolism of amino acids: its role in interorgan amino acid exchange. The American Journal of Clinical Nutrition 79:2, pages 185-197.
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Annie Husson, Carole Brasse‐Lagnel, Alain Fairand, Sylvie Renouf & Alain Lavoinne. (2003) Argininosuccinate synthetase from the urea cycle to the citrulline–NO cycle. European Journal of Biochemistry 270:9, pages 1887-1899.
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Snehlatha Natesan & S.Raghupathi Rami Reddy. (2001) Compensatory changes in enzymes of arginine metabolism during renal hypertrophy in mice. Comparative Biochemistry and Physiology Part B: Biochemistry and Molecular Biology 130:4, pages 585-595.
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François Morel, Annette Hus-Citharel & Olivier Levillain. (1996) Biochemical heterogeneity of arginine metabolism along kidney proximal tubules. Kidney International 49:6, pages 1608-1610.
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Nelson Carvajal & Stephen D. Cederbaum. (1986) Kinetics of inhibition of rat liver and kidney arginases by proline and branched-chain amino acids. Biochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology 870:2, pages 181-184.
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Donald F. Haggerty, Elaine B. Spector, Maureen Lynch, Rita Kern, Laura B. Frank & Stephen D. Cederbaum. 1983. Enzyme Induction and Modulation. Enzyme Induction and Modulation 57 76 .

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