Structural and functional investigation of a fungal member of carbohydrate esterase family 15 with potential specificity for rare xylans
Artikel i vetenskaplig tidskrift, 2023

In plant cell walls, covalent bonds between polysaccharides and lignin increase recalcitrance to degradation. Ester bonds are known to exist between glucuronic acid moieties on glucuronoxylan and lignin, and these can be cleaved by glucuronoyl esterases (GEs) from carbohydrate esterase family 15 (CE15). GEs are found in both bacteria and fungi, and some microorganisms also encode multiple GEs, although the reason for this is still not fully clear. The fungus Lentithecium fluviatile encodes three CE15 enzymes, of which two have previously been heterologously produced, although neither was active on the tested model substrate. Here, one of these, LfCE15C, has been investigated in detail using a range of model and natural substrates and its structure has been solved using X-ray crystallography. No activity could be verified on any tested substrate, but biophysical assays indicate an ability to bind to complex carbohydrate ligands. The structure further suggests that this enzyme, which possesses an intact catalytic triad, might be able to bind and act on more extensively decorated xylan chains than has been reported for other CE15 members. It is speculated that rare glucuronoxylans decorated at the glucuronic acid moiety may be the true targets of LfCE15C and other CE15 family members with similar sequence characteristics.

lignocellulose degradation

hemicellulose

Lentithecium fluviatile.

α/β hydrolases

biomass conversion

rare xylans

glucuronyl esterases

Författare

Scott Mazurkewich

Chalmers, Life sciences, Industriell bioteknik

Karoline Scholzen

Köpenhamns universitet

Rikke Brusch

Köpenhamns universitet

Jens-Christian N Poulsen

Köpenhamns universitet

Yusuf Theibich

Köpenhamns universitet

Silvia Hüttner

Chalmers, Life sciences, Industriell bioteknik

Lisbeth Olsson

Chalmers, Life sciences, Industriell bioteknik

Johan Larsbrink

Chalmers, Life sciences, Industriell bioteknik

Leila Lo Leggio

Köpenhamns universitet

Acta Crystallographica Section D: Structural Biology

2059-7983 (eISSN)

Vol. 79 545-555

Structure-based engineering of glucuronoyl esterases for separation of lignin and carbohydrates

Novo Nordisk Fonden (27698), 2018-01-01 -- 2020-12-31.

Drivkrafter

Hållbar utveckling

Styrkeområden

Nanovetenskap och nanoteknik

Ämneskategorier

Biokemi och molekylärbiologi

Strukturbiologi

Biokatalys och enzymteknik

Fundament

Grundläggande vetenskaper

DOI

10.1107/S205979832300325X

PubMed

37227091

Relaterade dataset

Structure of Lentithecium fluviatile carbohydrate esterase from the CE15 family (LfCE15C) [dataset]

URI: https://www.rcsb.org/structure/8B48 DOI: 10.2210/pdb8B48/pdb

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2024-04-23