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Production of Glucaric Acid from Hemicellulose Substrate by Rosettasome Enzyme Assemblies.
Lee, Charles C; Kibblewhite, Rena E; Paavola, Chad D; Orts, William J; Wagschal, Kurt.
  • Lee CC; Bioproducts Research Unit, USDA-ARS-WRRC, 800 Buchanan St., Albany, CA, 94710, USA. Charles.Lee@ars.usda.gov.
  • Kibblewhite RE; Bioproducts Research Unit, USDA-ARS-WRRC, 800 Buchanan St., Albany, CA, 94710, USA.
  • Paavola CD; NASA Ames Research Center, Moffett Field, CA, 94035, USA.
  • Orts WJ; Bioproducts Research Unit, USDA-ARS-WRRC, 800 Buchanan St., Albany, CA, 94710, USA.
  • Wagschal K; Bioproducts Research Unit, USDA-ARS-WRRC, 800 Buchanan St., Albany, CA, 94710, USA.
Mol Biotechnol ; 58(7): 489-96, 2016 Jul.
Article en En | MEDLINE | ID: mdl-27198564
ABSTRACT
Hemicellulose biomass is a complex polymer with many different chemical constituents that can be utilized as industrial feedstocks. These molecules can be released from the polymer and transformed into value-added chemicals through multistep enzymatic pathways. Some bacteria produce cellulosomes which are assemblies composed of lignocellulolytic enzymes tethered to a large protein scaffold. Rosettasomes are artificial engineered ring scaffolds designed to mimic the bacterial cellulosome. Both cellulosomes and rosettasomes have been shown to facilitate much higher rates of biomass hydrolysis compared to the same enzymes free in solution. We investigated whether tethering enzymes involved in both biomass hydrolysis and oxidative transformation to glucaric acid onto a rosettasome scaffold would result in an analogous production enhancement in a combined hydrolysis and bioconversion metabolic pathway. Three different enzymes were used to hydrolyze birchwood hemicellulose and convert the substituents to glucaric acid, a top-12 DOE value added chemical feedstock derived from biomass. It was demonstrated that colocalizing the three different enzymes to the synthetic scaffold resulted in up to 40 % higher levels of product compared to uncomplexed enzymes.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Polisacáridos / Celulosomas / Ácido Glucárico Idioma: En Año: 2016 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Polisacáridos / Celulosomas / Ácido Glucárico Idioma: En Año: 2016 Tipo del documento: Article