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                                                                             References      257
                        R. J. Siehnel, C. Egli and R. E. Hancock (1992). Polyphosphate-selective porin OprO of Pseudomonas
                          aeruginosa: expression, purification and sequence. Mol. Microbiol., 6, 2319–2326.
                        C. Singh (1959). New staining reagents for the detection of condensed phosphates. J. Sci. Ind. Res.,
                          188, 249–257.
                        C. Singh (1964). Interactions between cationic and anionic compounds of biological importance with
                          special reference to inorganic condensed phosphates and polymeric antibiotics. Ind. J. Chem., 2,
                          67–81.
                        M. Singler and D. Kaiser (1995). Ectopic production of guanosine penta- and tetraphosphate can
                          initiate early developmental gene expression in Myxococcus xanthus. Genes Dev., 9, 1633–1644.
                        R. Skorko (1989). Polyphosphate as a source of phosphoryl group in protein modification in
                          archebacterium Sulfolobus acidocaldarius. Biochimie, 71, 9–10.
                        R. Skorko, J. Osipuk and K. O. Stetter (1989). Glycogen-bound polyphosphate kinase from
                          archaebacterium Sulfolobus acidocaldarius. J. Bacteriol., 171, 5162–5164.
                        K. G. Skryabin, P. M. Rubtsov, N. L. Verleletskaya and I. S. Kulaev (1973). The detection of
                          high-molecular polyphosphates in nuclei of the fungus Endomyces magnusii (in Russian). Dokl.
                          Vyssh. Schkoli Biologicheskie Nauki, 10, 84–89.
                        G. D. Small and C. Cooper (1966). Purification and properties of nucleoside tetraphosphate hydrolase
                          from rabbit muscle. Biochemistry, 5, 14–26.
                        R. M. Smillie and G. Krotokov (1960). Phosphorus-containing compounds in Euglena gracilis
                          grown under difefrent conditions. Arch. Biochem. Biophys., 89, 83–89.
                        A. V. Smirnov, T. V. Kulakovskaya and I. S. Kulaev (2002a). Phosphate accumulation by an extremely
                          halophilic archae Halobacterium salinarium. Proc. Biochem., 37, 643–649.
                        A. V. Smirnov, N. E. Suzina, T. V. Kulakovskaya and I. S. Kulaev (2002b). Magnesium orthophos-
                          phate, a new form of reserve phosphates in the halophilic archaeon Halobacterium salinarium (in
                          Russian). Mikrobiologiia, 71, 786–793.
                        I. W. Smith, J. F. Wilkinson and J. P. Duguid (1954). Volutin production in Aerobacter aerogenes
                          due to nutrient imbalance. J. Bacteriol., 68, 450–463.
                        A. M. Sobolev (1962). The distribution, formation and utilization of phytin in higher plants (in
                          Russian). Usp. Biol. Khim., 4, 248–265.
                        R. Solimene, A. M. Guerrini and P. Donini (1980). Levels of acid-soluble polyphosphate in growing
                          cultures of Saccharomyces cerevisiae. J. Bacteriol., 143, 6710–6714.
                        A. L. Sommer and T. E. Booth (1938). Meta- and pyrophosphate within the algal cell. Plant Physiol.,
                          13, 199–205.
                        I. V. Sotnikova, G. N. Telesnina, I. N. Krakhmaleva, J. O. Sazykin and S. M. Navashin (1990).
                          High-molecular polyphosphate and pyrophosphate in cyclosporin-producing Tolypocladium sp.
                          and their role in the process of growth and antibiotic synthesis (in Russian). Antibiot. Khimioter., 35,
                          9–11.
                        H. Souzu (1967a). Decomposition of polyphosphate in yeast cells by freeze-thawing. Arch. Biochem.
                          Rinphys., 120, 338–343.
                        H. Souzu (1967b). Location of polyphosphate and polyphosphatase in yeast cells and damage to the
                          protoplasmic membrane of the cell by freeze-thawing. Arch. Biochem. Biophys., 120, 344–351.
                        A. S. Spirin (2001). Protein biosynthesis, the RNA world, and the origin of life. Herald Russ. Acad.
                          Sci., 71, 146–153.
                        E. Stackelbrandt and C. R. Woese (1981). Towards a phylogeny of the Actinomycetales and related
                          organisms. Curr. Microbiol., 5, 197–202.
                        A. J. C. Stahl and J. P. Ebel (1963). Etude des complexes entre acides ribonucleiques el polyphosphates
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