Synthesis and enzymatic hydrolysis of a diaryl benzyl ester model of a lignin-carbohydrate complex (LCC)

Author:

Nylander Filip,Sunner Hampus,Olsson Lisbeth,Christakopoulos Paul,Westman Gunnar

Abstract

Abstract Specific degradation of the bonds between lignin and carbohydrates is an important step towards separating individual lignocellulosic biopolymers for sustainable production of materials and chemicals. One of the most established covalent lignin-carbohydrate (LC) interactions is the ester bond between the α- or γ-hydroxyl group of a lignin phenylpropane unit and a glucuronic acid side chain of xylan. In this work, a model of the LC benzyl ester bond was synthesized in a one-pot reaction from a β-O-4 lignin unit and d-glucuronic acid, both from commercial sources. The resulting lignin-carbohydrate complex (LCC) model was unstable in aqueous solution. However, at pH 4, the rate of spontaneous hydrolysis was sufficiently low to allow for enzymatic splitting experiments. The enzymatic hydrolysis of the LC benzyl ester bond of the LCC model was demonstrated by means of the glucuronoyl esterase StGE2 from Sporotrichum thermophile, which showed a preference for erythro forms of the LCC model.

Publisher

Walter de Gruyter GmbH

Subject

Biomaterials

Reference98 articles.

1. Frequency and alkali resistance of wood lignin-carbohydrate bonds in wood;Tappi,1982

2. Purification, characterization and mass spectrometric sequencing of a thermophilic glucuronoyl esterase from Sporotrichum thermophile;FEMS Microbiol. Letters,2009

3. Quantification of lignin-carbohydrate linkages with high-resolution NMR spectroscopy;Planta,2011

4. Structural studies on the covalent bonds between lignin and carbohydrate in lignin-carbohydrate complexes by selective oxidation of the lignin;Wood Res,1989

5. Glucuronoyl esterase – novel carbohydrate esterase produced by Schizophyllum commune;FEBS Lett,2006

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