Mechanism and biomass association of glucuronoyl esterase: an α/β hydrolase with potential in biomass conversion
Journal article, 2022

Glucuronoyl esterases (GEs) are α/β serine hydrolases and a relatively new addition in the toolbox to reduce the recalcitrance of lignocellulose, the biggest obstacle in cost-effective utilization of this important renewable resource. While biochemical and structural characterization of GEs have progressed greatly recently, there have yet been no mechanistic studies shedding light onto the rate-limiting steps relevant for biomass conversion. The bacterial GE OtCE15A possesses a classical yet distinctive catalytic machinery, with easily identifiable catalytic Ser/His completed by two acidic residues (Glu and Asp) rather than one as in the classical triad, and an Arg side chain participating in the oxyanion hole. By QM/MM calculations, we identified deacylation as the decisive step in catalysis, and quantified the role of Asp, Glu and Arg, showing the latter to be particularly important. The results agree well with experimental and structural data. We further calculated the free-energy barrier of post-catalysis dissociation from a complex natural substrate, suggesting that in industrial settings non-catalytic processes may constitute the rate-limiting step, and pointing to future directions for enzyme engineering in biomass utilization.

Author

Zhiyou Zong

University of Copenhagen

Nankai University

Scott Mazurkewich

Chalmers, Biology and Biological Engineering, Industrial Biotechnology

Caroline Pereira

State University of Campinas

Haohao Fu

Nankai University

Wensheng Cai

Nankai University

Xueguang Shao

Nankai University

Munir Skaf

State University of Campinas

Johan Larsbrink

Chalmers, Biology and Biological Engineering, Industrial Biotechnology

Leila Lo Leggio

University of Copenhagen

Nature Communications

2041-1723 (ISSN) 20411723 (eISSN)

Vol. 13 1 1449

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

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

Subject Categories

Biochemistry and Molecular Biology

Biophysics

Bioinformatics (Computational Biology)

Structural Biology

Areas of Advance

Energy

Life Science Engineering (2010-2018)

DOI

10.1038/s41467-022-28938-w

PubMed

35304453

Related datasets

The glucuronoyl esterase OtCE15A R268A variant from Opitutus terrae in complex with, and covalently linked to, D-glucuronate [dataset]

DOI: 10.2210/pdb7b7h/pdb

More information

Latest update

9/29/2023