TY - JOUR
T1 - Characterization of two novel α-glucosidases from Bifidobacterium breve UCC2003
AU - Pokusaeva, Karina
AU - O'Connell-Motherway, Mary
AU - Zomer, Aldert
AU - Fitzgerald, Gerald F.
AU - Van Sinderen, Douwe
PY - 2009/2
Y1 - 2009/2
N2 - Two α-glucosidase-encoding genes (agl1 and agl2) from Bifidobacterium breve UCC2003 were identified and characterized. Based on their similarity to characterized carbohydrate hydrolases, the Agl1 and Agl2 enzymes are both assigned to a subgroup of the glycosyl hydrolase family 13, the α-1,6-glucosidases (EC 3.2.1.10). Recombinant Agl1 and Agl2 into which a His12 sequence was incorporated (Agl1His and Agl2 His, respectively) exhibited hydrolytic activity towards panose, isomaltose, isomaltotriose, and four sucrose isomers - palatinose, trehalulose, turanose, and maltulose - while also degrading trehalose and, to a lesser extent, nigerose. The preferred substrates for both enzymes were panose, isomaltose, and trehalulose. Furthermore, the pH and temperature optima for both enzymes were determined, showing that Agl1His exhibits higher thermo and pH optima than Agl2His. The two purified α-1,6-glucosidases were also shown to have transglycosylation activity, synthesizing oligosaccharides from palatinose, trehalulose, trehalose, panose, and isomaltotriose.
AB - Two α-glucosidase-encoding genes (agl1 and agl2) from Bifidobacterium breve UCC2003 were identified and characterized. Based on their similarity to characterized carbohydrate hydrolases, the Agl1 and Agl2 enzymes are both assigned to a subgroup of the glycosyl hydrolase family 13, the α-1,6-glucosidases (EC 3.2.1.10). Recombinant Agl1 and Agl2 into which a His12 sequence was incorporated (Agl1His and Agl2 His, respectively) exhibited hydrolytic activity towards panose, isomaltose, isomaltotriose, and four sucrose isomers - palatinose, trehalulose, turanose, and maltulose - while also degrading trehalose and, to a lesser extent, nigerose. The preferred substrates for both enzymes were panose, isomaltose, and trehalulose. Furthermore, the pH and temperature optima for both enzymes were determined, showing that Agl1His exhibits higher thermo and pH optima than Agl2His. The two purified α-1,6-glucosidases were also shown to have transglycosylation activity, synthesizing oligosaccharides from palatinose, trehalulose, trehalose, panose, and isomaltotriose.
UR - https://www.scopus.com/pages/publications/59949084447
U2 - 10.1128/AEM.02391-08
DO - 10.1128/AEM.02391-08
M3 - Article
C2 - 19114534
AN - SCOPUS:59949084447
SN - 0099-2240
VL - 75
SP - 1135
EP - 1143
JO - Applied and Environmental Microbiology
JF - Applied and Environmental Microbiology
IS - 4
ER -