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  3. Engineering novel S-glycosidase activity into extremo-adapted β-glucosidase by rational design

Engineering novel S-glycosidase activity into extremo-adapted β-glucosidase by rational design

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DOI
10.7892/boris.143154
Publisher DOI
10.1007/s00253-020-10582-3
Abstract
The breakdown of sulphur glycosidic bonds in thioglycosides can produce isothiocyanate, a chemoprotective agent linked to the prevention of cancers; however, only a handful of enzymes have been identified that are k0nown to catalyse this reaction. Structural studies of the myrosinase enzyme, which is capable of hydrolysing the thioglycosidic bond, have identified residues that may play important roles in sulphur bond specific activity. Using rational design, two extremo-adapted β-glycosidases from the species Thermus nonproteolyticus (TnoGH1) and Halothermothrix orenii (HorGH1) were engineered towards thioglycoside substrates. Twelve variants, six for TnoGH1 and six for HorGH1, were assayed for activity. Remarkable enhancement of the specificity (kcat/KM) of TnoGH1 and HorGH1 towards β-thioglycoside was observed in the single mutants TnoGH1-V287R (2500 M−1 s−1) and HorGH1-M229R (13,260 M−1 s−1) which showed a 3-fold increase with no loss in turnover rate when compared with the wild-type enzymes. Thus, the role of arginine is key to induce β-thioglycosidase activity. Thorough kinetic investigation of the different mutants has shed light on the mechanism of β-glycosidases when acting on the native substrate.
Date Issued
2020
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
500 Science > 540 Chemistry
Language(s)
en
Author(s)
Almulhim, Nouarh
Moody, Nicholas R.
Paradisi, Francesca  orcid-logo
Departement für Chemie und Biochemie (DCB)  
Additional Credits
Departement für Chemie und Biochemie (DCB)  
Journal
Applied microbiology and biotechnology
Publisher
Springer
ISSN
0175-7598
Project(s)
SUSFOOD2
Access(Rights)
Unknown
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