Open Access Te Herenga Waka-Victoria University of Wellington
Browse

Synthesis of N-acetylmannosamine-6-phosphate derivatives to investigate the mechanism of N-acetylmannosamine-6-phosphate 2-epimerase

Download (556.23 kB)
journal contribution
posted on 2024-07-03, 02:16 authored by Tanzeel Arif, MJ Currie, RCJ Dobson, HL Newson, V Poonthiyil, AJ Fairbanks, RA North, Phillip RendlePhillip Rendle
The synthesis of analogues of natural enzyme substrates can be used to help deduce enzymatic mechanisms. N-Acetylmannosamine-6-phosphate 2-epimerase is an enzyme in the bacterial sialic acid catabolic pathway. To investigate whether the mechanism of this enzyme involves a re-protonation mechanism by the same neighbouring lysine that performed the deprotonation or a unique substrate-assisted proton displacement mechanism involving the substrate C5 hydroxyl, the syntheses of two analogues of the natural substrate, N-acetylmannosamine-6-phosphate, are described. In these novel analogues, the C5 hydroxyl has been replaced with a proton and a methyl ether respectively. As recently reported, Staphylococcus aureus N-acetylmannosamine-6-phosphate 2-epimerase was co-crystallized with these two compounds. The 5-deoxy variant bound to the enzyme active site in a different orientation to the natural substrate, while the 5-methoxy variant did not bind, adding to the evidence that this enzyme uses a substrate-assisted proton displacement mechanism. This mechanistic information may help in the design of potential antibacterial drug candidates.

History

Preferred citation

Arif, T., Currie, M. J., Dobson, R. C. J., Newson, H. L., Poonthiyil, V., Fairbanks, A. J., North, R. A. & Rendle, P. M. (2021). Synthesis of N-acetylmannosamine-6-phosphate derivatives to investigate the mechanism of N-acetylmannosamine-6-phosphate 2-epimerase. Carbohydrate Research, 510, 108445-108445. https://doi.org/10.1016/j.carres.2021.108445

Journal title

Carbohydrate Research

Volume

510

Publication date

2021-12-01

Pagination

108445-108445

Publisher

Elsevier BV

Publication status

Published

Online publication date

2021-09-24

ISSN

0008-6215

eISSN

1873-426X

Article number

108445

Language

en