Deconstructing Best-in-Class Neoglycoclusters as a Tool for Dissecting Key Multivalent Processes in Glycosidase Inhibition.

atomistic simulations glycosidase iminosugar multivalency thermodynamic modeling

Journal

Chemistry (Weinheim an der Bergstrasse, Germany)
ISSN: 1521-3765
Titre abrégé: Chemistry
Pays: Germany
ID NLM: 9513783

Informations de publication

Date de publication:
15 Jan 2024
Historique:
revised: 11 01 2024
received: 11 12 2023
accepted: 12 01 2024
medline: 15 1 2024
pubmed: 15 1 2024
entrez: 15 1 2024
Statut: aheadofprint

Résumé

Multivalency represents an appealing option to modulate selectivity in enzyme inhibition and transform moderate glycosidase inhibitors into highly potent ones. The rational design of multivalent inhibitors is however challenging because global affinity enhancement relies on several interconnected local mechanistic events, whose relative impact is unknown. So far, the largest multivalent effects ever reported for a non-polymeric glycosidase inhibitor have been obtained with cyclopeptoid-based inhibitors of Jack bean α-mannosidase (JBα-man). Here, we report a structure-activity relationship (SAR) study based on the top-down deconstruction of best-in-class multivalent inhibitors. This approach provides a valuable tool to understand the complex interdependent mechanisms underpinning the inhibitory multivalent effect. Combining SAR experiments, binding stoichiometry assessments, thermodynamic modelling and atomistic simulations allowed us to establish the significant contribution of statistical rebinding mechanisms and the importance of several key parameters, including inhitope accessibility, topological restrictions, and electrostatic interactions. Our findings indicate that strong chelate-binding, resulting from the formation of a cross-linked complex between a multivalent inhibitor and two dimeric JBα-man molecules, is not a sufficient condition to reach high levels of affinity enhancements. The deconstruction approach thus offers unique opportunities to better understand multivalent binding and provides important guidelines for the design of potent and selective multiheaded inhibitors.

Identifiants

pubmed: 38221894
doi: 10.1002/chem.202304126
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e202304126

Informations de copyright

© 2024 Wiley-VCH GmbH.

Auteurs

Yan Liang (Y)

University of Strasbourg, LIMA UMR7042, FRANCE.

Rosaria Schettini (R)

University of Salerno, Chemistry and biology, ITALY.

Nicolas Kern (N)

University of Strasbourg, LIMA UMR7042, FRANCE.

Luca Manciocchi (L)

UHA University, LIMA, FRANCE.

Irene Izzo (I)

University of Salerno, Chemistry and biology, ITALY.

Martin Spichty (M)

UHA University, LIMA, FRANCE.

Anne Bodlenner (A)

University of Strasbourg, LIMA UMR7042, FRANCE.

Philippe Compain (P)

University of Strasbourg, ECPM, 25 rue Becquerel, 67087, Strasbourg, FRANCE.

Classifications MeSH