Page 239 - The Biochemistry of Inorganic Polyphosphates
P. 239
15:57
Char Count= 0
WU095/Kulaev
March 9, 2004
WU095-Ref
References 223
31
pools in intact algal cells. P-NMR and transmission electron microscopy studies. FEBS Lett.,
117, 137–142.
R. Erhadt, D. Bradford, R. J. Sevior, R. Amann and L. L. Blackall (1997). Development and use of
fluorescent in situ hybridisation probes for the detection and identification of Microtrix parvicella
in activated sludge. Syst. Appl. Microbiol., 20, 310–318.
G. Ertem and J. P. Ferris (1997). Template-directed synthesis using the heterogeneous templates
produced by montmorillonite catalysis. A possible bridge between the prebiotic and RNA worlds.
J. Am. Chem. Soc., 119, 7197–7201.
G. Ertem and J. P. Ferris (1998). Formation of RNA oligomers on montmorillonite: site of catalysis.
Origin Life Evol. Biosph., 28, 485–499.
E. Esposito and P. Wison (1956). Calcium and polymetaphosphate synthesis in Azotobacter
vinelandii. Biochem. Biophys. Acta, 22, 186–191.
G. Falkner, F. Wagner, J. V. Small and R. Falkner (1995). Influence of fluctuating phosphate supply
on the regulation of phosphate uptake by the blue–green alga Anacystis nidulans. J. Phycol., 31,
745–753.
M. Fang, A. Majumder, K.-J. Tsai and H.-Y. Wu (2000). ppGpp-dependent LeuO expression in
bacteria under stress. Biochem. Biophys. Res. Commun., 176, 64–70.
M. Faxen and L. A. Isaksson (1994). Functional interactions between translation, transcription and
ppGpp in growing Escherichia coli. Biochem. Biophys. Acta, 1219, 425–434.
V. D. Fedorov (1959). Polyphosphates in photosynthesing bacteria (in Russian). Dokl. Acad. Nauk
SSSR, 126, 406–409.
V. D. Fedorov (1961). Phosphorus metabolism in geen sulphur bacteria in relation to the photoas-
similation of carbon dioxide (in Russian). Candidate’s Thesis, Moscow State University, Moscow.
S. Felter and A. J. C. Stahl (1973). Enzymes du metabolisme des polyphosphates dans la levure.
III. Purification et proprietes de la polyphosphate–ADP–phosphotransferase. Biochimie, 55, 245–
251.
S. Felter, G. Dirheimer and J. P. Ebel (1968). Fractionation of inorganic long-chain polyphosphates
on Sephadex G100. J. Chromatogr., 35, 207–210.
31
S. J. Ferguson, D. G. Gadian, R. Glynn and G. Schulman (1978). Evidence from P nuclear magnetic
resonance that polyphosphate synthesis is a slip reaction in Paracoccus denitrificans. Biochem.
Soc. Trans., 7, 176–179.
J. P. Ferris and G. Ertem (1993). Montmorillonite catalysis of RNA oligomer formation in aqueous
solution. A model for the prebiotic formation of RNA. J. Am. Chem. Soc., 115, 12270–12275.
S. Yu. Fillipovich, T. P. Afanasieva, G. P. Bachurina and M. S. Kritskii (2000). ATP and polyphosphate-
+
dependent bacterial NAD –kinases. Appl. Biochem. Microbiol. (Moscow), 36, 117–121.
C. H. Fiske and Y. Subarrow (1925). The colorimetric determination of phosphorus. J. Biol. Chem.,
66, 375–400.
T. Fleitmann and W. Hennenberg (1848). Uber phosphorsaure Salze. Justus Liebigs Ann. Chem., 65,
304–308.
H. Flodgaard and P. Fleron (1974). Thermodynamic parameters for the hydrolysis of inorganic
pyrophosphate at pH 7.4 as a function of Mg ,K and ionic strength determined from equilibrium
2+
+
studies of the reaction. J. Biol. Chem., 249, 3465–3469.
I. Florin and M. Thelestam (1984). Polyphosphate-mediated protection from cellular intoxication
with Clostridium difficile toxin B. Biochim. Biophys. Acta, 805, 131–136.
S. W. Fox and K. Harada (1958). Thermal copolymerization of amino acids to products resembling
proteins. Science, 128, 1214–1216.