Characterisation of a hyperthermophilic transketolase from Thermotoga maritima DSM3109 as a biocatalyst for 7-keto-octuronic acid synthesis

Abstract

Transketolase (TK) is a fundamentally important enzyme in industrial biocatalysis which carries out a stereospecific carbon–carbon bond formation, and is widely used in the synthesis of prochiral ketones. This study describes the biochemical and molecular characterisation of a novel and unusual hyperthermophilic TK from Thermotoga maritima DSM3109 (TKtmar). TKtmar has a low protein sequence homology compared to the already described TKs, with key amino acid residues in the active site highly conserved. TKtmar has a very high optimum temperature (>90 °C) and shows pronounced stability at high temperature (e.g. t1/2 99 and 9.3 h at 50 and 80 °C, respectively) and in presence of organic solvents commonly used in industry (DMSO, acetonitrile and methanol). Substrate screening showed activity towards several monosaccharides and aliphatic aldehydes. In addition, for the first time, TK specificity towards uronic acids was achieved with TKtmar catalysing the efficient conversion of D-galacturonic acid and lithium hydroxypyruvate into 7-keto-octuronic acid, a very rare C8 uronic acid, in high yields (98%, 49 mM).

Publication DOI: https://doi.org/10.1039/d1ob01237a
Divisions: College of Engineering & Physical Sciences
Aston University (General)
Funding Information: M. Cárdenas-Fernández and J. M. Ward would like to thank the UK Biotechnology and Biological Sciences Research Council (BBSRC) for financial support of this work with BB/R021627/1 (ERA CoBioTech Grant). F. Subrizi and H. C. Hailes would like to thank the financial support from BBSRC BB/R021643/1 (ERACoBioTech Grant). Input and advice from the project collaborators from the ERABioCat European Project TRALAMINOL is also acknowledged.
Additional Information: Copyright © The Royal Society of Chemistry 2021. Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Publication ISSN: 1477-0539
Last Modified: 24 Mar 2026 16:28
Date Deposited: 24 Mar 2026 16:28
Full Text Link: https://www.sco ... ons/85111427684
Related URLs: https://pubs.rs ... 1/ob/d1ob01237a (Publisher URL)
PURE Output Type: Article
Published Date: 2021-08-07
Published Online Date: 2021-07-07
Accepted Date: 2021-07-05
Authors: Cárdenas-Fernández, Max (ORCID Profile 0000-0003-1422-5369)
Subrizi, Fabiana
Dobrijevic, Dragena
Hailes, Helen C.
Ward, John M.

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