Page 274 - The Biochemistry of Inorganic Polyphosphates
P. 274

WU095/Kulaev
               WU095-Ref
                                     References
                            258     March 9, 2004  15:57  Char Count= 0
                              inorganiques dans le levure. III. Role des cations divalenls dans la formation des complexes. Bull.
                              Soc. Chim. Biol., 45, 887–1001.
                            A. J. Stahl, J. Bakes, J. H. Weil and J. P. Ebel (1964). Etude du transfert du phosphore des
                              polyphosphates inorganiques dans les acides ribonucleiques chez fractions ribonucleiques. Bull.
                              Soc. Chim. Biol., 46, 1017–1026.
                            G. D. Steinman, R. M. Lemmon and M. Calvin (1964). Cyanamide, a possible key compound in
                              chemical evolution. Proc. Natl. Acad. Sci. USA, 52, 27–33.
                            W. D. P. Stewart and G. A. Godd (1975). Polyhedral bodies: Carboxysomes of nitrogen fixing
                              blue–green algae. Br. Phycol. J., 10, 273–278.
                            H. Stich (1953). Der Nachweis und das Verhallen von Metaphosphaten in normal verdunkelten und
                              Trypaflavin-behandelten Acetabularien. Z. Naturforsch., 8B, 36–44.
                            H. Stich (1955). Synthese und Abbau der Polyphosphate von Acetabularia nach autoradiographischen
                                             32
                              Unlersuchungen des P-Stolfwechsels. Z. Naturforsch., 10B, 282–284.
                            H. Stich (1956). Andergungen von Kern und Polyphosphates in Abgangigkeit von dem Energiegehall
                              des Cyloplasmas bei Acetabularia. Chromosoma, 7, 693–707.
                            F. S. Stover (1997). Capillary electrophoresis of longer-chain polyphosphates. J. Chromatogr., 769,
                              349–351.
                            U. P. Strauss and E. H. Smith (1953). Polyphosphates as polyelectrolytes. II. Viscosity of aqueous
                              solutions of Graham’s salts. J. Am. Chem. Soc., 75, 6186–6193.
                            U. P. Strauss and T. L. Treitler (1955a). Chain branching in glassy polyphosphates – dependence on
                              the Na/P ratio and rate of degradation at 25 ˚C. J. Am. Chem. Soc., 77, 1473–1485.
                            U. P. Strauss and T. L. Treitler (1955b). Degradation of polyphosphates in solution. I. Kinetics and
                              mechanism of the hydrolysis at branching points in polyphosphate chains. J. Am. Chem. Soc., 78,
                              3553–3559.
                            U. P. Strauss, E. H. Smith and P. Y. Wineman (1953). Polyphosphates as polyelectrolytes. I. Light
                              scattering and viscosity of sodium polyphosphates in electrolyte solutions, J. Am. Chem. Soc., 75,
                              3935–3941.
                            M. Streichan, J. R. Golecki and G. Schon (1990). Polyphosphate-accumulating bacteria from sewage
                              plant with different processes of biological phosphorus removal. FEMS Microbiol. Ecol., 73,
                              113–124.
                            G. N. Streshinskaya, I. B. Naumova and A. D. Gololobov (1970). The polyphosphate content of
                              some species of yeast grown on various carbon sources (in Russian). Dokl. Akad. Nauk SSSR, 190,
                              227–231.
                            Z. Y. Sun and L. Zhao (2002). Feasibility of calcium polyphosphate fiber as scaffold materials for
                              tendon tissue engineering in vitro (in Chinese). Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi, 16,
                              426–428.
                            I. Sundberg and M. Nilshammer-Holmvall (1975). The diurnal variation in phosphate uptake and
                              ATP level in relation to deposition of starch, lipid and polyphosphate in synchronized cells of
                              Scenedesmus. Z. Pflanzenphysiol., 76, 270–284.
                            N. Suresh, R. Warburg, M. Timmerman, J. Wells, M. Coccia, M. F. Roberts and H. O. Halvorson
                              (1985). New strategies for the isolation of microorganisms responsible for phosphate accumulation.
                              Water Sci. Technol., 17, 99–111.
                            A. L. Svitil, M. Cashel and J. W. Zyskind (1993). Guanosine tetraphosphate inhibits protein synthesis
                              in vivo. A possible protective mechanism for starvation stress in Escherichia coli. J. Biol. Chem.,
                              268, 2307–2311.
                            L. Svoboda and U. Schmidt (1997). Single-column ion chromatography of linear polyphosphates.
                              J. Chromatogr., 767, 107–113.
   269   270   271   272   273   274   275   276   277   278   279