Substrate-assisted mechanism for the degradation of n-glycans by a gut bacterial mannoside phosphorylase

Publication date

2024-05-17T13:15:57Z

2024-05-17T13:15:57Z

2023-04-07

2024-05-17T13:16:02Z

Abstract

The unknown human gut bacterium mannoside phosphorylase (UhgbMP) is involved in the metabolization of eukaryotic N-glycans lining the intestinal epithelium, a factor associated with the onset and symptoms of inflammatory bowel diseases. In contrast with most glycoside phosphorylases, the putative catalytic acid of UhgbMP, Asp104, is far from the scissile glycosidic bond, challenging the classical Koshland mechanism. Using quantum mechanics/molecular mechanics metadynamics, we demonstrate that the enzyme operates by substrate-assisted catalysis via the 3-hydroxyl group of the mannosyl unit, following a 1S5/B2,5 → [B2,5]¿ → 0S2 conformational itinerary. Given the conservation of the active site hydrogen bond network across the family, this mechanism is expected to apply to other GH130 enzymes, as well as recently characterized mannoside phosphorylases with similar folds. Gaining insight into the catalytic reaction of these enzymes can aid the design of specific inhibitors to control interactions between gut microbes and the host.

Document Type

Article


Accepted version

Language

English

Publisher

American Chemical Society

Related items

Versió postprint del document publicat a: https://doi.org/10.1021/acscatal.3c00451

ACS Catalysis, 2023, vol. 13, num.7, p. 4283-4289

https://doi.org/10.1021/acscatal.3c00451

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(c) American Chemical Society, 2023