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Combined inhibitor free-energy landscape and structural analysis reports on the mannosidase conformational coordinate.


ABSTRACT: Mannosidases catalyze the hydrolysis of a diverse range of polysaccharides and glycoconjugates, and the various sequence-based mannosidase families have evolved ingenious strategies to overcome the stereoelectronic challenges of mannoside chemistry. Using a combination of computational chemistry, inhibitor design and synthesis, and X-ray crystallography of inhibitor/enzyme complexes, it is demonstrated that mannoimidazole-type inhibitors are energetically poised to report faithfully on mannosidase transition-state conformation, and provide direct evidence for the conformational itinerary used by diverse mannosidases, including ?-mannanases from families GH26 and GH113. Isofagomine-type inhibitors are poor mimics of transition-state conformation, owing to the high energy barriers that must be crossed to attain mechanistically relevant conformations, however, these sugar-shaped heterocycles allow the acquisition of ternary complexes that span the active site, thus providing valuable insight into active-site residues involved in substrate recognition.

SUBMITTER: Williams RJ 

PROVIDER: S-EPMC4138987 | biostudies-literature | 2014 Jan

REPOSITORIES: biostudies-literature

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Combined inhibitor free-energy landscape and structural analysis reports on the mannosidase conformational coordinate.

Williams Rohan J RJ   Iglesias-Fernández Javier J   Stepper Judith J   Jackson Adam A   Thompson Andrew J AJ   Lowe Elisabeth C EC   White Jonathan M JM   Gilbert Harry J HJ   Rovira Carme C   Davies Gideon J GJ   Williams Spencer J SJ  

Angewandte Chemie (International ed. in English) 20131211 4


Mannosidases catalyze the hydrolysis of a diverse range of polysaccharides and glycoconjugates, and the various sequence-based mannosidase families have evolved ingenious strategies to overcome the stereoelectronic challenges of mannoside chemistry. Using a combination of computational chemistry, inhibitor design and synthesis, and X-ray crystallography of inhibitor/enzyme complexes, it is demonstrated that mannoimidazole-type inhibitors are energetically poised to report faithfully on mannosida  ...[more]

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