Page 260 - The Biochemistry of Inorganic Polyphosphates
P. 260
WU095/Kulaev
WU095-Ref
References
244 March 9, 2004 15:57 Char Count= 0
T. Mino, T. Kawakami and T. Matsuo (1985). Location of phosphorus in activated sludge and
function of intracellular polyphosphates in biological phosphorus removal process. Water Sci.
Technol., 17, 93–106.
T. Mino, M. C. M. Van Loosdrecht and J. J. Heijnen (1998). Microbiology and biochemistry of the
enhanced biological phosphate removal process. Water Res., 32, 3193–3207.
C. A. Mitchell, S. Brown, J. K. Campbell, A. D. Munday and C. L. Speed (1996). Regulation of second
messengers by the inositol polyphosphate 5-phosphatases. Biochem. Soc. Trans., 24, 994–1000.
G. J. Mittenhuber (2001). Comparative genomics and evolution of genes encoding bacterial (p)ppGpp
synthetases/hydrolases (the Rel, RelA and SpoT proteins). Mol. Microbiol. Biotechnol., 3, 585–
600.
S. Miyachi (1961). Inorganic polyphosphate in spinach leaves. J. Biochem. (Tokyo), 50, 367–371.
S. Miyachi (1962). Turnower of phosphate compounds in Chlorella cells under phosphate deficiency
in darkness. Plant. Cell. Physiol., 3,1–4.
S. Miyachi and S. Miyachi (1961). Modes of formation of phosphate compounds and their turnover
in Chlorellu cells during the process of life cycle as studied by the technique of synchonous
culture. Plant Cell Physiol., 2, 415–424.
S. Miyachi and H. Tamiya (1961). Distribution and turnover of phosphate compounds in growing
Chlorella cells. Plant Cell Physiol., 2, 405–414.
S. Miyachi, R. Kanai, S. Mihara, S. Miyachi and S. Aoki (1964). Metabolic roles of inorganic
polyphosphates in Chlorella cells. Biochim. Biophys. Acta, 93, 625–634.
T. Miyake, T. Shiba, A. Kameda, Y. Ihara, M. Munekata, K. Ishige and T. Noguchi (1999). The gene
for an exopolyphosphatase of Pseudomonas aeruginosa. DNA Res., 6, 103–108.
B. Moreno, J. A. Urbina, E. Oldfield, B. N. Bailey, C. O. Rodrigues and R. Docampo (2000). 31 P
NMR spectroscopy of Trypanosoma brucei, Trypanosoma cruzi and Leishmania major. J. Biol.
Chem., 275, 28356–28362.
T. Morohoshi, T. Maruo, Y. Shirai, J. Kato, T. Ikeda, N. Takiguchi, H. Othake and A. Kuroda (2002).
Accumulation of inorganic polyphosphate in phoU mutants of Escherichia coli and Synestocystis
sp. strain PCC6803. Appl. Environ. Microbiol., 68, 4107–4110.
S. Mudd, S. A. Yoshida and M. Koike (1958). Polyphosphate as accumulator of phosphorus and
energy. J. Bacteriol., 75, 224–235.
A. Muhammed (1961). Studies on biosynthesis of polymethaphosphate by an enzyme from
Corynebacterium xerosis. Biochem. Biophys. Acta, 54, 121–132.
A. Muhammed, A. Rodgers and D. F. Hughes (1959). Purification and properties of a polymetaphos-
phatase from Corynebacterium xerosis. J. Gen. Microbiol., 20, 482–495.
T. Mukai, S. Kawai, H. Matsukawa, Y. Matuo and K. Murata (2003). Characterization and molecular
cloning of a novel enzyme, inorganic polyphosphate/ATP-glucomannokinase, of Arthrobacter sp.
Strain KM. Appl. Environ. Microbiol., 69, 3849–3857.
A. Mullan, J. P. Quinn and J. W. McGrath (2002). A nonradioactive method for the assay of
polyphosphate kinase activity and its application in the study of polyphosphate metabolism in
Burkhoderia cepacia. Anal. Biochem., 308, 294–299.
S. Muller and J. P. Ebel (1958). Etude des phosphates condenses contenus dans divers champignons.
Bull. Soc. Chim. Biol., 40, 1153–1165.
J. M¨uller, B. Westenberg, T. Boller and A. Wiemken (1992). Synthesis and degradation of polyphos-
phate in the fission yeast Schizosaccharomyces pombe: mutations in phosphatase genes do not
affect polyphosphate metabolism. FEMS Microbiol. Lett., 71, 151–156.
S. Muller-Felter and J. P. Ebel (1962). Separation des acides riboiuicleiques el des polyphosphates