Page 90 - Biodegradable Polyesters
P. 90

68  3 Microbial Synthesis of Biodegradable Polyesters: Processes, Products, Applications

                     4. Hezayen, F.F., Tindall, B.J., Steinbüchel,  the transcriptional repressor PhaR in
                       A., and Rehm, B.H.A. (2002) Character-  Ralstonia eutropha H16. Microbiology,
                       ization of a novel halophilic archaeon,  151, 825–833.
                       Halobiforma haloterrestris gen. nov.,  14. Steinbüchel, A., Aerts, K., Babel, W.,
                       sp. nov., and transfer of Natronobac-  Follner, C., Liebergesell, M., Madkour,
                       terium nitratireducens to Halobiforma  M.H., Mayer, F., Pieper-Fürst, U., Pries,
                       nitratireducens comb. nov. Int. J. Syst.  A., Valentin, H.E., and Wieczorek, R.
                       Evol. Microbiol., 52, 2271–2280.  (1995) Considerations on the structure
                     5. Hoffmann, N. and Rehm, B.H.A.    and biochemistry of bacterial polyhy-
                       (2005) Nitrogendependent regulation  droxyalkanoic acid inclusions. Can. J.
                       of medium-chain length polyhy-   Microbiol., 41, 94–105.
                       droxyalkanoate biosynthesis genes in  15. Rehm, B.H.A. (2003) Polyester synthases:
                       pseudomonads. Biotechnol. Lett., 27,  natural catalysts for plastics. Biochem. J.,
                       279–282.                         376, 15–33.
                     6. Lee, S.Y. and Chang, H.N. (1995) Pro-  16. Rehm, B.H.A. and Steinbüchel, A. (1999)
                       duction of poly(hydroxyalkanoic acid).  Biochemical and genetic analysis of
                       Adv. Biochem. Eng./Biotechnol., 52,  PHA synthases and other proteins
                       27–58.                           required for PHA synthesis. Int. J. Biol.
                     7. Gao, D., Maehara, A., Yamane, T., and  Macromol., 5, 3–19.
                       Ueda, S. (2001) Identification of the  17. Rehm, B.H.A. (2007) Biogenesis of
                       intracellular polyhydroxyalkanoate  Microbial Polyhydroxyalkanoate Gran-
                       depolymerase gene of Paracoccus deni-  ules: a platform technology for the
                       trificans and some properties of the gene  production of tailor-made bioparticles.
                       product. FEMS Microbiol. Lett., 196,  Curr.IssuesMol.Biol., 9, 41–62.
                       159–164.                      18. Brandl, H., Gross, R.A., Lenz, R.W.,
                     8. Handrick, R., Reinhardt, S., and  and Fuller, R.C. (1990) Plastics from
                       Jendrossek, D. (2000) Mobilization of  bacteria and for bacteria: poly(beta-
                       poly(3-hydroxybutyrate) in Ralstonia  hydroxyalkanoates) as natural, biocom-
                       eutropha. J. Bacteriol., 20, 5916–5918.  patible, and biodegradable polyesters.
                     9. Rehm, B.H.A. (2006) Genetics and  Adv. Biochem. Eng. Biotechnol., 41,
                       biochemistry of polyhydroxyalkanoate  77–93.
                       granule self-assembly: the key role of  19. Lee, S.Y. and Choi, J.I. (2001) Production
                       polyester synthases. Biotechnol. Lett., 28,  of microbial polyester by fermentation
                       207–213.                         of recombinant microorganisms. Adv.
                    10. Zinn, M., Witholt, B., and Egli, T. (2001)  Biochem. Eng. Biotechnol., 71, 183–207.
                       Occurrence, synthesis and medical appli- 20. Brockelbank, J.A., Peters, V., and Rehm,
                       cation of bacterial polyhydroxyalkanoate.  B.H.A. (2006) Recombinant Escherichia
                       Adv. Drug Delivery Rev., 53, 5–21.  coli produces ZZ domain displaying
                    11. Peoples, O.P. and Sinskey, A. (1989)  biopolyester granules suitable for IgG
                       Poly-betahydroxybutyrate (PHB) biosyn-  purification. Appl. Environ. Microbiol.,
                       thesis in Alcaligenes eutrophus H16.  72, 7394–7397.
                       Identification and characterization of the  21. Peters, V. and Rehm, B.H.A. (2006) In
                       PHB polymerase gene (phbC). J. Biol.  vivo enzyme immobilization by use of
                       Chem., 264, 15298–15303.         engineered polyhydroxyalkanoate syn-
                    12. Slater, S.C., Voige, W.H., and Dennis,  thase. Appl. Environ. Microbiol., 72,
                       D.E. (1988) Cloning and expression in  1777–1783.
                       Escherichia coli of the Alcaligenes eutro-  22. Rehm, B.H.A. (2006) in Microbial Bio-
                       phus H16 poly-beta-hydroxybutyrate  nanotechnology: Biological Self-Assembly
                       biosynthetic pathway. J. Bacteriol., 170,  Systems and Biopolymer-based Nanos-
                       4431–4436.                       tructures (ed B.H.A. Rehm), Horizon
                    13. Pötter, M., Müller, H., and Steinbüchel,  Bioscience, Cambridge, pp. 1–34.
                       A. (2005) Influence of homologous  23. Barnard, G.C., McCool, J.D., Wood,
                       phasins (PhaP) on PHA accumulation  D.W., and Gerngross, T.U. (2005) Inte-
                       and regulation of their expression by  grated recombinant protein expression
   85   86   87   88   89   90   91   92   93   94   95