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Polyhydroxyalkanoic acid

Steinbuchel, A., 1991.Polyhydroxyalkanoic acids. In Biomaterials. Edited by D. Byrom. [Pg.59]

Yoon, S. C., Choi, M. H., 1999. Local sequence dependence of polyhydroxyalkanoic acid... [Pg.60]

Steinbuchel A and Valentin HE., Diversity of bacterial polyhydroxyalkanoic acids. Ferns Microbiol lett, 1995, 128(3), 219-228. [Pg.250]

Keywords. Polyhydroxyalkanoic acids, Microbial polyesters, PHA, PHA synthase, Metabolic engineering, PHA granules, Ralstonia eutropha, Pseudomonas aeruginosa... [Pg.81]

Many bacteria are able to synthesize polyesters of hydroxyalkanoic acids and to accumulate these water insoluble polyhydroxyalkanoic acids (PHA) in the cytoplasm as inclusions and as storage compounds for energy and carbon these in-... [Pg.82]

Steinbuchel A (1991) Polyhydroxyalkanoic acid. In Byrom D (ed) Biomaterials. Novel materials from biological sources. Macmillan, Basingstoke, p 123... [Pg.177]

STEINBUCHEL, A., HUSTEDE, E, LffiBERGESELL, M PIEPER, U., TIMM, A., VALENTIN, H., Molecular basis for biosynthesis and accumulation of polyhydroxyalkanoic acid in bacteria, FEMS Micribiol. Rev., 1992,103,217-230. [Pg.79]

Observations Polymalic acid is the simplest biocompatible polyhydroxyalkanoic acid... [Pg.480]

Polyhydroxyalkanoic Acid Having Vinyl, Ester, Carboxyl, or Sulfonic Acid Group... [Pg.484]

Steinbuchel, A., and Valentin, H. E. 1995. Diversity of bacterial polyhydroxyalkanoic acid. FEMS Microbio. Lett., 128, 219-228. [Pg.555]

Polyhydroxyalkanoic acids (PHAs) have been extensively researched since the 1970s because of the potential applications of these compounds as biodegradable substitutes for synthetic polymers. The most successful PHA products are the polyhydroxybutyrates (PHBs). The bacterium... [Pg.322]

Steinbuchel A, Valentin H. Diversity of bacterial polyhydroxyalkanoic acids FEMS Microbiol Lett 1995 128 219-23. [Pg.98]

In this chapter, we focus on the synthesis of polyhydroxyalkanoic acids (PHA) and cyanophycin (cyanophycin granule polyperptide, CGP) and the key enzymes PHA synthase (PhaC) and cyanophycin synthetase (CphA), respectively. Both polymers are synthesized by template-independent processes. The issue of template dependency and template independency will be illustrated in more detail with polymers consisting of amino acids. [Pg.247]

Valentin, H.E., and Steinbtichel, A. (1994) Application of enzymatically synthesized short-chain-length hydroxy fatty acid coenzyme A thioesters for assay of polyhydroxyalkanoic acid synthesis. Appl. Microbiol. Biotechnol., 40, 699-709. [Pg.269]

Pieper-Fiirst, U., Madkour, M.H., Mayer, F., and Steinhtichel, A. (1994) Purification and characterization of a 14-kDa protein that is hound to the surface of polyhydroxyalkanoic acid granules in Rhodococus ruber. J. Bacteriol., 176, 4328-4337. [Pg.270]

Wieczorek, R., Pries, A., Steinhtichel, A., and Mayer, F. (1995) Analysis of a 24-kDa protein associated with the polyhydroxyalkanoic acid granules in Alcaligenes eutrophus. J. Bacteriol., 177, 2425-2435. [Pg.270]

Rehm, B.H.A., Kruger, N., and Steinbtichel, A. (1998) A new metabolic link between fatty add de novo synthesis and polyhydroxyalkanoic acid synthesis. [Pg.271]

The synthesis of bacterial storage compounds is reviewed in Chapter 10, focusing on two systems, namely polyhydroxyalkanoic acids and cyanophycin. Bacterial storage compounds are very interesting biopolymers having attractive material properties, sometimes similar to those of the petrochemical-based polymers. [Pg.451]

Gorenflo V, Steinbiichel A, Marose S, Rieseberg M, Scheper T (1999) Quantification of bacterial polyhydroxyalkanoic acids by Nile red staining. Appl Microbiol Biotechnol 51 765-772... [Pg.110]

U. Pieper-Fiirst, M.H. Madkour, F. Mayer, A. Steinbiichel, Identification of the region of a 14-kilodalton protein of Rhodococ-cus ruber that is responsible for the binding of this phasin to polyhydroxyalkanoic acid granules, J. Bacteriol. 177 (9) (1995) 2513-2523. [Pg.122]

Steinbiichel, A. Polyhydroxyalkanoic acids. Biomaterials novel materials from biological sources, pp. 124—213. Stockton, New York (1991)... [Pg.418]

Steinbuchel A., 1991, Polyhydroxyalkanoic acids. In Biomaterials (Byron D., ed.) Macmillan Publishers Ltd and ICl Biological Products Bussiness, pp. 123-214. [Pg.164]

McCool, G.J. and Cannon, M.C. (2001) PhaC and PhaR are required for polyhydroxyalkanoic acid synthase activity in Bacillus megaterium. Journal of Bacteriology, 183( 14), 4235-4320. [Pg.167]

Hein S, Tran H, Steinbiichel A (1998) Synechocystis sp. PCC6803 possesses a two-component polyhydroxyalkanoic acid synthase similar to that of anoxygenic purple sulfur bacteria. Arch... [Pg.58]

Rehm BHA, Mitsky TA, Steinbtichel A (2001) Role of fatty add de novo biosynthesis in polyhydroxyalkanoic acid (PHA) and rhamnolipid synthesis by Pseudomonads establishment of the transacylase (PhaG)-mediated pathway for PHA biosynthesis in Escherichia coli. Appl Environ Microbiol 67 3102-3109... [Pg.83]

Fiichtenbusch B, Wullbrandt D, Steinbiichel A (2000) Production of polyhydroxyalkanoic acids by Ralstonia eutropha and Pseudomonas oleovorans from an oil remaining from biotechnological rhamnose production. Applied Microbiology and Biotechnology 53(2) 167-172... [Pg.115]

Steinbtichel A, Valentin HE (1995) Diversity of bacterial polyhydroxyalkanoic acids. FEMS Microbiol Lett 128 219-228... [Pg.120]

Lee HJ, Chd MH, Kim TU, Yoon SC (2001) Accumulation of polyhydroxyalkanoic acid containing large amounts of unsaturated monomers in Pseudomonas fluorescens BM07 utilizing saccharides and its inhibition by 2-bromooctanoic acid. Appl Environ Microbiol 67 4963-4974 Lee WH, Azizan MNM, Sudesh K (2004) Effects of culture conditions on the composition of poly(3-hydroxybutyrate-co-4-hydroxybutyrate) synthesized by Comamonas acidovorans. Polym Degrad Stab 84 129-134... [Pg.177]


See other pages where Polyhydroxyalkanoic acid is mentioned: [Pg.59]    [Pg.82]    [Pg.480]    [Pg.126]    [Pg.143]    [Pg.124]    [Pg.127]    [Pg.16]    [Pg.83]    [Pg.181]   
See also in sourсe #XX -- [ Pg.282 ]




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