Overflow metabolism during anaerobic growth of Klebsiella aerogenes NCTC 418 on glycerol and dihydroxyacetone in chemostat culture

Springer Science and Business Media LLC - Tập 147 Số 3 - Trang 268-275 - 1987
Hugo Streekstra1, M. Joost Teixeira de Mattos1, Oense M. Neijssel1, D. W. Tempest2
1Laboratorium voor Microbiologie, Universiteit van Amsterdam, Amsterdam, The Netherlands
2Department of Microbiology, University of Sheffield, Sheffield, UK

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Bernt E, Gutmann I (1974) Äthanol, Bestimmung mit Alkohol-Dehydrogenase und NAD. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1545?1548

Carlsson J (1973) Simplified gas chromatographic procedure for identification of bacterial metabolic products. J Appl Microbiol 25:287?289

Cooper RA, Anderson A (1970) The formation and catabolism of methylglyoxal during glycolysis in Escherichia coli. FEBS Lett 11:273?276

Evans CGT, Herbert D, Tempest DW (1970) The continuous culture of microorganisms. 2. Construction of a chemostat. In: Norris JR, Ribbons DW (eds) Methods in microbiology, vol 2. Academic Press, London New York, pp 277?327

Forage RG, Foster MA (1982) Glycerol fermentation in Klebsiella pneumoniae: Functions of the coenzyme B12-dependent glycerol and diol dehydratase. J Bacteriol 149:413?419

Gawehn K, Bergmeyer HU (1974) d-(-)-Lactat. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1538?1541

Gornall AG, Bardawill CJ, David MA (1949) Determination of serum proteins by means of the biuret reaction. J Biol Chem 177:751?766

Gottschalk G (1979) Bacterial metabolism. Springer, Berlin Heidelberg New York

Hartmanis MGN, Stadtman TC (1986) Diol metabolism and diol dehydratase in Clostridium glycolicum. Arch Biochem Biophys 245:144?152

Herbert D (1961) The chemical composition of micro-organisms as a function of their environment. In: Meynell GG, Gooder H (eds) Microbial reaction to the environment. 11th Symp Soc Gen Microbiol. Cambridge University Press, Cambridge, pp 391?416

Herbert D, Phipps PJ, Tempest DW (1965) The chemostat: design and instrumentation. Lab Pract 14:1150?1161

Herbert D, Phipps PJ, Strange RE (1971) Chemical analysis of microbial cells. In: Norris JR, Ribbons DW (eds) Methods in microbiology, vol 5b. Academic Press, London New York, pp 209?344

Holz G, Bergmeyer HU (1974) Acetat. Bestimmung mit Acetat-Kinase und Hydroxylamin. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1574?1578

Hommes RWJ, van Hell B, Postma PW, Neijssel OM, Tempest DW (1985) The functional significance of glucose dehydrogenase in Klebsiella aerogenes. Arch Microbiol 143:163?168

Hueting S, de Lange T, Tempest DW (1978) Properties and regulation of synthesis of the glycerol dehydrogenase present in Klebsiella aerogenes NCTC 418, growing in chemostat culture. FEMS Microbiol Lett 4:185?189

Korsova TL, Vorontsov EA, Gurevitch VM, Poznanskaya AA (1982) Substrate specificity of adenosylcobalamin dependent glycerol dehydratase interaction with enantiomers of 1,2-propanediol. Biokhimiya 47:379?384

Lin ECC (1976) Glycerol dissimilation and its regulation in bacteria. Ann Rev Microbiol 30:535?578

Lin ECC, Magasanik B (1960) The activation of glycerol dehydrogenase of Aerobacter aerogenes by monovalent ions. J Biol Chem 235:1820?1823

McGee DE, Richards JH (1981) Purification and subunit characterization of propanediol dehydratase, a membrane-associated enzyme. Biochemistry 20:4293?4298

Neijssel OM, Tempest DW (1975) The regulation of carbohydrate metabolism in Klebsiella aerogenes NCTC 418 organisms, growing in chemostat culture. Arch Microbiol 106:251?258

Postma PW, Lengeler JW (1985) Phosphoenolpyruvate: carbohydrate phosphotransferase system of bacteria. Microbiol Rev 49:232?269

Rurgers M, Teixeira de Mattos MJ, Postma PW, van Dam K (1987) Establishment of the steady state in glucose-limited chemostat cultures of Klebsiella aerogenes. J Gen Microbiol (in press)

Schutz H, Radler F (1984) Anaerobic reduction of glycerol to propanediol-1,3 by Lactobacillus brevis and Lactobacillus buchneri. System Appl Microbiol 5:169?178

Teixeira de Mattos MJ, Tempest DW (1983) Metabolic and energetic aspects of the growth of Klebsiella aerogenes NCTC 418 on glucose in anaerobic chemostat cultures. Arch Microbiol 134:80?85

Teixeira de Mattos MJ, Streekstra H, Tempest DW (1984) Metabolic uncoupling of substrate level phosphorylation in anaerobic glucose-limited chemostat cultures of Klebsiella aerogenes NCTC 418. Arch Microbiol 139:260?264

Teixeira de Mattos MJ, Streekstra H, Neijssel OM, Tempest DW (1987) The link between the efficiency of ATP generation and metabolic flexibility during anaerobic growth on various carbon sources. In: Stowell JD, Beardsmore AJ, Keevil CW, Woodward JR (eds) Carbon substrates in biotechnology. Soc Gen Microbiol, vol 21. IRL Press, Oxford

Tempest DW, Neijssel OM (1984) The status of Y ATP and maintenance energy as biologically interpretable phenomena. Ann Rev Microbiol 38:459?486

Thomas TD, Ellwood DC, Longyear VMC (1979) Change from homo- to heterolactic fermentation by Streptococcus lactis resulting from glucose limitation in anaerobic chemostat culture. J Bacteriol 138:109?117

Toraya T, Fukui S (1977) Immunochemical evidence for the difference between coenzyme B12-dependent diol dehydratase and glycerol dehydratase. Eur J Biochem 76:285?289

Wieland O (1974) Glycerol: UV Methode. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1448?1450

Wieland O, Witt I (1974) Dihydroxyaceton. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1487?1489

Williamson JR (1974) Succinat. In: Bergmeyer HU (ed) Methoden der enzymatischen Analyse, 3rd edn, vol 2. Verlag Chemie, Weinheim, pp 1661?1666