Literature DB >> 21931163

α-Galactosidase/sucrose kinase (AgaSK), a novel bifunctional enzyme from the human microbiome coupling galactosidase and kinase activities.

Laëtitia Bruel1, Gerlind Sulzenbacher, Marine Cervera Tison, Ange Pujol, Cendrine Nicoletti, Josette Perrier, Anne Galinier, David Ropartz, Michel Fons, Frédérique Pompeo, Thierry Giardina.   

Abstract

α-Galactosides are non-digestible carbohydrates widely distributed in plants. They are a potential source of energy in our daily food, and their assimilation by microbiota may play a role in obesity. In the intestinal tract, they are degraded by microbial glycosidases, which are often modular enzymes with catalytic domains linked to carbohydrate-binding modules. Here we introduce a bifunctional enzyme from the human intestinal bacterium Ruminococcus gnavus E1, α-galactosidase/sucrose kinase (AgaSK). Sequence analysis showed that AgaSK is composed of two domains: one closely related to α-galactosidases from glycoside hydrolase family GH36 and the other containing a nucleotide-binding motif. Its biochemical characterization showed that AgaSK is able to hydrolyze melibiose and raffinose to galactose and either glucose or sucrose, respectively, and to specifically phosphorylate sucrose on the C6 position of glucose in the presence of ATP. The production of sucrose-6-P directly from raffinose points toward a glycolytic pathway in bacteria, not described so far. The crystal structures of the galactosidase domain in the apo form and in complex with the product shed light onto the reaction and substrate recognition mechanisms and highlight an oligomeric state necessary for efficient substrate binding and suggesting a cross-talk between the galactose and kinase domains.

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Year:  2011        PMID: 21931163      PMCID: PMC3220449          DOI: 10.1074/jbc.M111.286039

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  48 in total

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Review 5.  Sucrose utilisation in bacteria: genetic organisation and regulation.

Authors:  Sharon J Reid; Valerie R Abratt
Journal:  Appl Microbiol Biotechnol       Date:  2005-01-20       Impact factor: 4.813

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9.  Catabolism of raffinose, sucrose, and melibiose in Erwinia chrysanthemi 3937.

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6.  Functional analysis of family GH36 α-galactosidases from Ruminococcus gnavus E1: insights into the metabolism of a plant oligosaccharide by a human gut symbiont.

Authors:  M Cervera-Tison; L E Tailford; C Fuell; L Bruel; G Sulzenbacher; B Henrissat; J G Berrin; M Fons; T Giardina; N Juge
Journal:  Appl Environ Microbiol       Date:  2012-08-24       Impact factor: 4.792

7.  Sucrose 6F-phosphate phosphorylase: a novel insight in the human gut microbiome.

Authors:  Alexandra S Tauzin; Laetitia Bruel; Elisabeth Laville; Cendrine Nicoletti; David Navarro; Bernard Henrissat; Josette Perrier; Gabrielle Potocki-Veronese; Thierry Giardina; Mickael Lafond
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8.  α-Galactosidase and Sucrose-Kinase Relationships in a Bi-functional AgaSK Enzyme Produced by the Human Gut Symbiont Ruminococcus gnavus E1.

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