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Regulation of Hepatic Fatty Acid Oxidation and Ketogenesis

Published online by Cambridge University Press:  28 February 2007

Victor A. Zammit
Affiliation:
Hannah Research Institute, Ayr KA6 5HL, Scotland
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Abstract

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Type
Symposium on ‘Comparative Aspects of Fatty Acid Metabolism’
Copyright
Copyright © The Nutrition Society 1983

References

REFERENCES

Aas, M. & Daae, N. W. (1971). Biochim. biophys. Acta 239, 208.CrossRefGoogle Scholar
Bailey, E. & Horne, J. A. (1972). Comp. Biochem. Physiol. 42B, 659.Google Scholar
Baird, G. D., Heitzman, R. J. & Hibbit, K. G. (1972). Biochem. J. 128, 1311.CrossRefGoogle Scholar
Bates, E. J. & Saggerson, E. D. (1979). Biochem. J. 182, 751.CrossRefGoogle Scholar
Bates, E. J., Topping, D. L., Sooranna, S. R., Saggerson, E. D. & Mayes, P. A. (1977). FEBS Lett. 84, 225.CrossRefGoogle Scholar
Berry, M. N., Williamson, D. H. & Wilson, M. B. (1964). Biochem. J. 94, 17C.CrossRefGoogle Scholar
Bloch, K. & Vance, D. (1977). Ann. Rev. Biochem. 46, 263.CrossRefGoogle Scholar
Borrebaek, B., Christiansen, R., Christophersen, B. O. & Bremer, J. (1976). Circulation Res. 38 (Suppl. 1) 16.Google Scholar
Brass, E. P. & Hoppel, C. L. (1978). J. biol. Chem. 253, 2688.CrossRefGoogle Scholar
Bremer, J., Bjerve, K. S., Borrebaek, B. & Christiansen, R. (1976). Mol. Cell Biochem. 12, 113.CrossRefGoogle Scholar
Bremer, J. & Davis, E. J. (1974). Biochim. biophys. Acta 370, 564.CrossRefGoogle Scholar
Carroll, M. A., Morris, P. E., Grosjean, C. D., Anzalone, T. & Haldar, D. (1982). Arch. Biochem. Biophys. 214, 17.CrossRefGoogle Scholar
Claus, T. H., Schlumpf, J. R., El-Maghrabi, M. R., Pilkis, J. & Pilkis, S. J. (1980). Proc. Nat. Acad. Sci., USA 77, 6501.CrossRefGoogle Scholar
Cook, G. A., Nielsen, R. C., Hawkins, R. A., Mehlman, M. A., Lakshmanan, M. R. & Veech, R. L. (1977). J. biol. Chem. 252, 4421.CrossRefGoogle Scholar
Cook, G. A., Otto, D. A. & Cornell, N. W. (1980). Biochem. J. 192, 955.CrossRefGoogle Scholar
Cronholm, T., Curstedt, T. & Sjövall, J. (1982). In Metabolic Compartmentation, p. 331 [Sies, H., editor]. London and New York: Academic Press.Google Scholar
Davis, T. F. & Langslow, D. R. (1975). Comp. Biochem. Physiol. 52A, 645.CrossRefGoogle Scholar
Declercq, P. E., Debeer, L. J. & Mannaerts, G. P. (1982). Biochem. J. 204, 247.CrossRefGoogle Scholar
De Jong, J. W. & Hülsmann, W. C. (1973). Biochim. biophys. Acta 197, 127.CrossRefGoogle Scholar
Demaugre, F., Leroux, J.-P. & Cartier, P. (1978). Biochem. J. 172, 91.CrossRefGoogle Scholar
Fine, M. B. & Williams, R. H. (1960). Am. J. Physiol. 199, 403.CrossRefGoogle Scholar
Garland, P. B. (1968). In Metabolic Roles of Citrate, p. 41 [Goodwin, T. W., editor]. New York: Academic Press.Google Scholar
Goodridge, A. G. (1972). J. biol. Chem. 247, 6949.CrossRefGoogle Scholar
Goresky, G. A., Daly, D. S., Mishkin, S. & Arias, I. M. (1978). Am. J. Physiol. 234, E542.Google Scholar
Groot, P. H. E., Scholte, H. R. & Hülsmann, W. C. (1976). Adv. Lipid Res. 14, 75.CrossRefGoogle Scholar
Groot, P. H. E., van Loon, C. M. I. & Hülsmann, W. C. (1974). Biochim. biophys. Acta 337, 1.CrossRefGoogle Scholar
Guynn, R. W., Veloso, D. & Veech, R. L. (1972). J. biol. Chem. 247, 7325.CrossRefGoogle Scholar
Hales, C. N., Luzio, J. P. & Siddle, K. (1978). Biochem. Soc. Symp. 43, 97.Google Scholar
Halestrap, A. P. (1978 a). Biochem. J. 172, 377.CrossRefGoogle Scholar
Halestrap, A. P. (1978 b). Biochem. J. 172, 389.CrossRefGoogle Scholar
Huth, W. (1981). Eur. J. Biochem. 120, 357.CrossRefGoogle Scholar
Huth, W., Dierich, C., Deynhausen, V. & Seubert, W. (1973). Hoppe-Seyler's Z. Physiol. Chem. 354, 635.CrossRefGoogle Scholar
Huth, W., Jonas, R., Wunderlich, I. & Seubert, W. (1975). Eur. J. Biochem. 59, 475.CrossRefGoogle Scholar
Huth, W. & Menke, R. (1980). Hoppe-Seyler's Z. Physiol. Chem. 361, 607.Google Scholar
Huth, W., Stermann, R., Holze, G. & Seubert, W. (1978). In Biochemical and Clinical Aspects of Ketone Body Metabolism, p. 11 [Söling, H. D. and Seufert, C. D., editors]. Stuttgart: George Thieme.Google Scholar
Ide, T. & Ontko, J. A. (1981). J. biol. Chem. 256, 10247.CrossRefGoogle Scholar
Laker, M. E. & Mayes, P. A. (1982). Biochem. J. 206, 427.CrossRefGoogle Scholar
Lopes-Cardozo, M., Mulder, I., Van Vugt, F., Hermans, P. G. & van den Bergh, S. G. (1975). Mol. Cell Biochem. 9, 155.CrossRefGoogle Scholar
Lopes-Cardozo, M. & van den Bergh, S. G. (1972). Biochim. biophys. Acta 283, 1.CrossRefGoogle Scholar
Lund, H., Borrebaek, B. & Bremer, J. (1980). Biochim. biophys. Acta 620, 364.CrossRefGoogle Scholar
Lynen, F. (1979). In Perspectives in Inherited Metabolic Diseases, vol. 3, P. 1 [Berra, B. and Didonato, S., editors]. Milan: Ermes.Google Scholar
McGarry, J. D. & Foster, D. W. (1972). Metab. Clin. Exp. 21, 471.CrossRefGoogle Scholar
McGarry, J. D. & Foster, D. W. (1974). J. biol. Chem. 249, 7984.CrossRefGoogle Scholar
McGarry, J. D. & Foster, D. W. (1981). Biochem. J. 200, 217.CrossRefGoogle Scholar
McGarry, J. D., Jürgen, M. M. & Foster, D. W. (1973). J. biol. Chem. 248, 270.CrossRefGoogle Scholar
McGarry, J. D., Mannaerts, G. P. & Foster, D. W. (1977). J. clin. Invest. 60, 265.CrossRefGoogle Scholar
McGarry, J. D., Mannaerts, G. P. & Foster, D. W. (1978). Biochim. biophys. Acta 530, 305.CrossRefGoogle Scholar
McGarry, J. D., Robles-Valdes, C. & Foster, D. W. (1975). Proc. Nut. Acad. Sci., USA 72, 4385.CrossRefGoogle Scholar
Mayes, P. A. & Felts, J. M. (1967). Nature, Lond. 215, 716.CrossRefGoogle Scholar
Mayes, P. A. & Laker, M. E. (1981). Biochem. Soc. Trans. 9, 339.CrossRefGoogle Scholar
Middleton, B. (1978). In Biochemical and Clinical Aspects of Ketone Body Metabolism, p. 1 [Söling, H. D. and Seufert, C. D., editors]. Stuttgart: George Thieme.Google Scholar
Nestel, P. J. & Steinberg, D. (1963). J. Lipid Res. 4, 461.CrossRefGoogle Scholar
Nimmo, H. G. (1979). FEBS Lett. 101, 262.CrossRefGoogle Scholar
Nimmo, H. G. (1980). In Recently Discovered Systems of Enzyme Regulation by Reversible Phosphorylation, p. 135 [Cohen, P., editor]. Amsterdam: Elsevier.Google Scholar
Norum, K. R., Farstad, M. & Bremer, J. (1966). Biochem. biophys. Res. Commun. 22, 797.CrossRefGoogle Scholar
Nosadini, R., Alberti, K. G. M. M., Johnston, D. G., Del Prato, S., Marescotti, C. & Duner, E. (1981). Metab. clin. Exp. 30, 563.CrossRefGoogle Scholar
Nosadini, R., Datta, M., Hodson, A. & Alberti, K. G. M. M. (1980). Biochem. J. 190, 323.CrossRefGoogle Scholar
Ontko, J. A. & Johns, M. L. (1980). Biochem. J. 192, 959.CrossRefGoogle Scholar
Owen, D. E., Felig, P., Morgan, A. P., Wahren, J. & Cahill, G. F. (1969). J. clin. Invest. 48, 574.CrossRefGoogle Scholar
Page, M. A. & Tubbs, P. K. (1978). Biochem. J. 173, 925.CrossRefGoogle Scholar
Pande, S. V. (1975). Proc. Nat. Acad. Sci., USA 72, 883.CrossRefGoogle Scholar
Pande, S. V. & Parvin, R. (1976). J. biol. Chem. 251, 6683.CrossRefGoogle Scholar
Pande, S. V. & Parvin, R. (1980 a). J. biol. Chem. 255, 2994.CrossRefGoogle Scholar
Pande, S. V. & Parvin, R. (1980 b). In Carnitine Biosynthesis, Metabolism & Functions, p. 143 [Frenkel, R. A. and McGarry, J. D., editors]. New York: Academic Press.CrossRefGoogle Scholar
Parvin, R. & Pande, S. V. (1979). J. biol. Chem. 25, 5423.CrossRefGoogle Scholar
Pearson, D. J. & Tubbs, P. K. (1967). Biochem. J. 105, 953.CrossRefGoogle Scholar
Pilkis, S. J., El-Maghrabi, M. R., Pilkis, J., Claus, T. H. & Cumming, D. A. (1981). J. biol. Chem. 256, 3171.CrossRefGoogle Scholar
Ramsay, R. R. (1978). Biochem. Soc. Trans. 6, 72.CrossRefGoogle Scholar
Ramsay, R. R. & Tubbs, P. K. (1974). Biochem. Soc. Trans. 2, 1285.CrossRefGoogle Scholar
Ramsay, R. R. & Tubbs, P. K. (1975). FEBS Lett. 54, 21.CrossRefGoogle Scholar
Reed, W. D., Clinkenbeard, K. D. & Lane, M. D. (1975). J. biol. Chem. 250, 3117.CrossRefGoogle Scholar
Robinson, I. N. & Zammit, V. A. (1982). Biochem. J. 206, 177.CrossRefGoogle Scholar
Robles-Valdez, C., McGarry, J. D. & Foster, D. W. (1976). J. biol. Chem. 251, 6007.CrossRefGoogle Scholar
Saggerson, E. D. (1979). Trends Biochem. Sci. 4, 33.CrossRefGoogle Scholar
Saggerson, E. D. & Bates, E. (1981). In Short-term Regulation of Liver Metabolism, p. 247 [Hal, L. and Van de Werve, G., editors]. Amsterdam: Elsevier.Google Scholar
Saggerson, E. D. & Carpenter, C. A. (1981). FEBS Lett. 129, 225.CrossRefGoogle Scholar
Saggerson, E. D., Snoswell, A. M., Trimble, R. P., Illman, R. J. & Topping, D. L. (1981). Biochem. Int. 3, 441.Google Scholar
Siess, E. A., Fahimi, F. M. & Wieland, O. H. (1980). Biochem. Biophys. Res. Commun. 95, 205.CrossRefGoogle Scholar
Siess, E. A., Kientsch-Engel, R. I. & Wieland, O. H. (1982). Eur. J. Biochem. 121, 493.CrossRefGoogle Scholar
Soler-Argilaga, C., Russel, R. L. & Heimberg, M. (1978). Arch. Biochem. Biophys. 190, 367.CrossRefGoogle Scholar
Van Tol, A. (1974). Biochim. biophys. Acta 357, 14.CrossRefGoogle Scholar
Van Tol, A. & Hülsmann, W. C. (1970). Biochim. biophys. Acta 223, 416.CrossRefGoogle Scholar
Watson, H. R. & Lindsay, D. B. (1972). Biochem. J. 128, 53.CrossRefGoogle Scholar
Williamson, D. H., Veloso, D., Ellington, E. V. & Krebs, H. A. (1969). Biochem. J. 114, 575.CrossRefGoogle Scholar
Williamson, D. H. & Whitelaw, E. (1978). Biochem. Soc. Symp. 43, 137.Google Scholar
Zammit, V. A. (1980). Biochem. Soc. Trans. 8, 543.CrossRefGoogle Scholar
Zammit, V. A. (1981 a). Biochem. J. 198, 75.CrossRefGoogle Scholar
Zammit, V. A. (1981 b). Trends Biochem. Sci. 6, 46.CrossRefGoogle Scholar
Zammit, V. A., Beis, A. & Newsholme, E. A. (1979). FEBS Lett. 103, 212.CrossRefGoogle Scholar
Zammit, V. A. & Corstorphine, C. G. (1982). Biochem. J. 204, 757.CrossRefGoogle Scholar
Zammit, V. A. & Newsholme, E. A. (1979). Biochem. J. 184, 313.CrossRefGoogle Scholar