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                                                                             References      239
                          (2001). Role of inorganic polyphosphate in promoting ribosomal protein degradation by the Lon
                          protease in E. coli. Science, 293, 705–805.
                        A. Kuroda, N. Takiguchi, T. Gotanda, K. Nomura, J. Kato, T. Ikeda and H. Ohtake (2002). A simple
                          method to release polyphosphate from activated sludge for phosphorus reuse and recycling.
                          Biotechnol. Bioeng., 78, 333–338.
                        S. Kusano and A. Ishihama (1997). Functional interaction of Escherihia coli RNA polymerase with
                          inorganic polyphosphate. Genes Cells, 2, 433–441.
                        C. Lambert, D. Weuster-Botz, R. Weichenhain, E. W. Kreutz, A. A. de Graaf and S. M. Schroberth
                          (2002). Monitoring of inorganic polyphosphate dynamics in Corynebacterium glutamicum using
                                                    31
                          a novel oxygen sparger for real time P in vivo NMR. Acta. Biotechnol., 22, 245–260.
                        R. Lange, D. Fischer and R. Hengge-Aronis (1995). Identification of transcriptional start sites and
                          the role of ppGpp in the expression of rpoS, the structural gene for the sigma S subunit of RNA
                          polymerase in Escherichia coli. J. Bacteriol., 177, 4676–4680.
                        P. Langen (1958). ¨ Uber Polyphosphate in Ostesee-Algen. Acta Biol. Med. Ger., 1, 368–372.
                        P. Langen and E. Liss (1958a). Uber den Polyphosphates der Hefe. Naturwisseschaften, 45, 191–197.
                        P. Langen and E. Liss (1958b). Uber Bildung and Umsatz der Polyphosphate in Hefe. Biochem. Z.,
                          330, 455–466.
                        P. Langen and E. Liss (1959). Zur Charakterisierung der Polyphosphate der Hefe. Naturwis-
                          senschaften, 46, 151–152.
                        B. A. Lawrence, C. Suarez, A. DePina, E. Click, N. H. Kolodny and M. M. Allen (1998). Two
                          internal pools of soluble polyphosphate in the cyanobacterium Synestocystis sp. strain PCC 6308:
                                 31
                          an in vivo P NMR spectroscopic study. Arch. Microbiol., 169, 195–200.
                        N. H. Lawry and T. E. Jensen (1979). Deposition of condensed phosphate as an effect of varying
                          sulfur deficiency in the cyanobacterium Synechococcus sp. (Anacystis nidulans). Arch. Microbiol.,
                          120, 1–7.
                        N. H. Lawry and T. E. Jensen (1986). Condensed phosphate deposition, sulfur amino acid use, and
                          undirectional transsulfuration in Synechococcus leopoliensis. Arch. Microbiol., 144, 317–323.
                        N. H. Lawry and R. D. Symon (1982). The normal and induced occurence of cyanophycin inclusion
                          bodies in several blue–green algae. J. Phycol., 18, 391–399.
                        L. Le Port, E. Etaix, P. Godin, P. Leduc and R. Buvet (1971). Archetypes of present day process of
                          transphosphorylation, transacylation and peptide synthesis. In R. Buvet and C. Ponnemperuma
                          (Eds), Molecular Evolution, Chemical Evolution and Origin of Life, Vol. 1, North-Holland,
                          Amsterdam, The Netherlands, p. 197.
                        A. LeFurgey, P. Ingram and J. J. Blum (1990). Elemental composition of polyphosphate-containing
                          vacuoles and cytoplasm of Leishmania major. Mol. Biochem. Parasitol., 40, 77–86.
                        J. M. Leitao, B. Lorenz, N. Bachinski, C. Wilhelm, W. G. E. M¨uller and H. C. Schr¨oder (1995).
                          Osmotic-stress-induced synthesis and degradation of inorganic polyphosphates in the algae
                          Phaerodactilum tricornutum. Mar. Ecol. Prog. Ser., 121, 279–288.
                        G. Leon, C. Fiori, P. Das, M. Moreno, R. Tovar, J. L. Sanchez-Salas and M. L. Munoz (1997).
                          Electron probe analysis and biochemical characterization of electron-dense granules secreted by
                          Entamoeba histolytica. Mol. Biochem. Parasitol., 85, 233–242.
                        T. P. Levchuk, V. G. Gershkovich and A. B. Lozinov (1969). Some features of phosphorus metabolism
                          in Candida yeasts when grown on n-alkanes (in Russian). Mikrobiol. Sint., 7, 22–27.
                        G. Leyhausen, B. Lorenz, H. Zhu, W. Geurtsen, R. Bohnensack, W. G. E. M¨uller and H. C. Schr¨oder
                          (1998). Inorganic polyphosphate in human osteoblast-like cells. J. Bone Miner. Res., 13, 803–
                          812.
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