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Ardawi, M. S. M (1986). The transport of glutamine and alanine into rat colonocytes. Biochem.J 238, 131-135.[Medline]

Ardawi, M. S. M. and Newsholme, E. A (1983). Glutamine metabolism in lymphocytes of the rat. Biochem. J 212, 835-842.[Medline]

Baetge, E. E., Bulloch, K. and Stallcup, W. B (1979). A comparison of glutamate transport in cloned cell lines from the central nervous system. Brain Res 167, 210-214.[Medline]

Bannai, S (1984). Induction of cystine and glutamate transport activity in human fibroblast by diethyl maleate and other electrophilic agents. J. Biol. Chem 259, 2435-2440.[Abstract/Free Full Text]

Bannai, S. and Kitamura, E (1982). Adaptive enhancement of cystine and glutamate uptake in human diploid fibroblasts in culture. Biochim. Biophys. Acta 721, 1-10.[Medline]

Bradford, M. M (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem 72, 248-254.[Medline]

Butler, M., Imamura, T., Thomas, J. and Thilly, W. G (1983). High yields from microcarrier cultures by medium perfusion. J. Cell Sci 61, 351-363.[Abstract]

Butler, M. and Spier, R. E (1984). The effects of glutamine utilisation and ammonia production on the growth of BHK cells in microcarrier cultures. J. Biotech 1, 187-196.

Crook, R. B. and Tomkins, G. M (1978). Effect of glutamine on the degradation of glutamine synthetase in hepatoma tissue-culture cells. Biochem. J 176, 47-57.[Medline]

Dall'Asta, V., Gazzola, G. C., Franchi-Gazzola, R., Bussolati, O., Longo, N. and Guidotti, G. G (1983). Pathways of L-glutamic acid transport in cultured human fibroblasts. J. Biol. Chem 258, 6371-6379.[Abstract/Free Full Text]

DeMars, R (1958). The inhibition by glutamine of glutamyl transferase formation in cultures of human cells. Biochim. Biophys. Acta 27, 435-436.[Medline]

Eagle, H (1955). Nutrition needs of mammalian cells in tissue culture. Science 122, 501-504.[Free Full Text]

Eagle, H (1959). Amino acid metabolism in mammalian cell culture. Science 130, 432-437.[Free Full Text]

Eagle, H., Oyama, V. I., Levy, M., Horton, C. L. and Fleischman, R (1956). The growth response of mammalian cells in tissue culture to L-glutamine and L-glutamic acid. J. Biol. Chem 218, 607-616.[Free Full Text]

Engstrom, W. and Zetterberg, A (1984). The relationship between purines, pyrimidines, nucleosides and glutamine for fibroblast cell proliferation. J. Cell. Physiol 120, 233-241.[Medline]

Feng, B., Shiber, S. K. and Max, S. R (1990). Glutamine regulates glutamine synthetase expression in skeletal muscle cells in culture. J. Cell Physiol 145, 376-380.[Medline]

Forster, S. and Lloyd, J. B (1985). pH-profile of cystine and glutamate transport in normal and cystinotic human fibroblasts. Biochim. Biophys. Acta 814, 398-400.[Medline]

Griffiths, J. B (1973). The effects of adapting human diploid cells to grow in glutamic acid media on cell morphology, growth and metabolism. J. Cell Sci 12, 617-629.[Abstract/Free Full Text]

Griffiths, J. B. and Pirt, S. J (1967). The uptake of amino acids by mouse cells (strain LS) during growth in batch culture and chemostat culture. Proc. R. Soc. (Lond.) B 168, 421-438.[Medline]

Hassell, T., Gleave, S. and Butler, M (1991). Growth inhibition in animal cell culture: the effect of lactate and ammonia. Appl. Biochem. Biotech 30, 29-41.[Medline]

Hassell, T. and Butler, M (1990). Adaptation to non-ammoniagenic medium and selective substrate feeding leads to enhanced yields in animal cell cultures. J. Cell Sci 96, 501-508.[Abstract/Free Full Text]

Jenkins, H. A., Butler, M. and Dickson, A. J (1992). Characterization of the importance of glutamine metabolism to hybridoma cell growth and productivity. J. Biotechnol 23, 167-182.[Medline]

Kim, K. H. and Rhee, S. G (1987). Subunit interaction elicited by partial inactivation with L-methionine sulfoximine and ATP differently affects the biosynthetic and-glutamyltransferase reactions catalyzed by yeast glutamine synthetase. J. Biol. Chem 262, 13050-13054.[Abstract/Free Full Text]

Kitoh, T., Kubota, M., Takimoto, T., Hashimoto, H., Shimizu, T., Sano, H., Akiyama, Y. and Mikawa, H (1990). Metabolic basis for differential glutamine requirements of human leukemia cell lines. J. Cell. Physiol 143, 150-153.[Medline]

Lacoste, L., Chaudhary, K. D. and Lapointe, J (1982). Derepression of the glutamine synthetase in neuroblastoma cells at low concentrations of glutamine. J. Neurochem 39, 78-85.[Medline]

Lerner, J (1987). Acidic amino acid transport in animal cells and tissues. Comp. Biochem. Physiol 87, 443-457.

Levintow, L (1957). Evidence that glutamine is a precursor of asparagine in a human cell in tissue culture. Science 126, 611-612.[Free Full Text]

Miller, R. E., Hackenberg, R. and Gershman, H (1978). Regulation of glutamine synthetase in cultured 3T3-L1 cells by insulin, hydrocortisone and dibutyryl cyclic AMP. Proc. Nat. Acad. Sci. USA 75, 1418-1422.[Abstract/Free Full Text]

Milman, G., Portnoff, L. S. and Tiemeier, D. C (1975). Immunochemical evidence for glutamine-mediated degradation of glutamine synthetase in cultured Chinese hamster cells. J. Biol. Chem 250, 1393-1399.[Abstract/Free Full Text]

Paul, J. and Fottrell, P. F (1963). Mechanism of D-glutamyltransferase repression in mammalian cells. Biochim. Biophys. Acta 67, 334-336.[Medline]

Reitzer, L. J., Wice, B. M. and Kennell, D (1979). Evidence that glutamine not sugar is the major energy source for cultured HeLa cells. J.Biol. Chem 254, 2669-2676.[Free Full Text]

Sandrasagra, A., Patejunas, G. and Young, A. P (1988). Multiple mechanisms by which glutamine synthetase levels are controlled in murine tissue culture cells. Arch. Biochem. Biophys 266, 522-531.[Medline]

Smith, R. J., Larson, S., Stred, S. E. and Durschlag, R. P (1984). Regulation of glutamine synthetase and glutaminase activities in cultured skeletal muscle cells. J. Cell. Physiol 120, 197-203.[Medline]

Stoker, M. G. P. and MacPherson, J. A (1964). Syrian hamster fibroblast cell line BHK21 and its derivatives. Nature 203, 1355-1357.[Medline]

Tiemeier, D. C. and Milman, G (1972). Chinese hamster liver glutamine synthetase. J. Biol. Chem 247, 2272-2277.[Abstract/Free Full Text]

Tritsch, G. L. and Moore, G. E (1962). Spontaneous decomposition of glutamine in cell culture media. Exp. Cell Res 28, 360-364.[Medline]

Wice, B. M., Reitzer, L. J. and Kennell, D (1981). The continuous growth of vertebrate cells in the absence of sugar. J. Biol. Chem 256, 7812-7819.[Free Full Text]




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This Article
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