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Enhanced Thermostability of an l-Rhamnose Isomerase for d-Allose Synthesis by Computation-Based Rational Redesign of Flexible Regions.

Authors :
Wei M
Gao X
Zhang W
Li C
Lu F
Guan L
Liu W
Wang J
Wang F
Qin HM
Source :
Journal of agricultural and food chemistry [J Agric Food Chem] 2023 Oct 25; Vol. 71 (42), pp. 15713-15722. Date of Electronic Publication: 2023 Oct 12.
Publication Year :
2023

Abstract

d-Allose is a low-calorie rare sugar with great application potential in the food and pharmaceutical industries. The production of d-allose has been accomplished using l-rhamnose isomerase (L-RI), but concomitantly increasing the enzyme's stability and activity remains challenging. Here, we rationally engineered an L-RI from Clostridium stercorarium to enhance its stability by comprehensive computation-aided redesign of its flexible regions, which were successively identified using molecular dynamics simulations. The resulting combinatorial mutant M2-4 exhibited a 5.7-fold increased half-life at 75 °C while also exhibiting improved catalytic efficiency. Especially, by combining structure modeling and multiple sequence alignment, we identified an α0 region that was universal in the L-RI family and likely acted as a "helix-breaker". Truncating this region is crucial for improving the thermostability of related enzymes. Our work provides a significantly stable biocatalyst with potential for the industrial production of d-allose.

Details

Language :
English
ISSN :
1520-5118
Volume :
71
Issue :
42
Database :
MEDLINE
Journal :
Journal of agricultural and food chemistry
Publication Type :
Academic Journal
Accession number :
37823838
Full Text :
https://doi.org/10.1021/acs.jafc.3c05736