Searched for: author%3A%22van+Geel-Schutten%2C+G.H.%22
(1 - 13 of 13)
document
van Hijum, S.A.F.T. (author), Kralj, S. (author), Ozimek, L.K. (author), Dijkhuizen, L. (author), van Geel-Schutten, G.H. (author), TNO Kwaliteit van Leven (author)
Lactic acid bacteria (LAB) employ sucrase-type enzymes to convert sucrose into homopolysaccharides consisting of either glucosyl units (glucans) or fructosyl units (fructans). The enzymes involved are labeled glucansucrases (GS) and fructansucrases (FS), respectively. The available molecular, biochemical, and structural information on sucrase...
article 2006
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Kralj, S. (author), van Geel-Schutten, G.H. (author), Faber, E.J. (author), van der Maarel, M.J.E.C. (author), Dijkhuizen, L. (author), TNO Kwaliteit van Leven (author)
Glucansucrase or glucosyltransferase (GTF) enzymes of lactic acid bacteria display high sequence similarity but catalyze synthesis of different α-glucans (e.g., dextran, mutan, alternan, and reuteran) from sucrose. The variations in glucosidic linkage specificity observed in products of different glucansucrase enzymes appear to be based on...
article 2005
document
TNO Kwaliteit van Leven (author), Kralj, S. (author), Stripling, E. (author), Sanders, P. (author), van Geel-Schutten, G.H. (author), Dijkhuizen, L. (author)
Lactobacillus reuteri strain ATCC 55730 (LB BIO) was isolated as a pure culture from a Reuteri tablet purchased from the BioGaia company. This probiotic strain produces a soluble glucan (reuteran), in which the majority of the linkages are of the alpha-(1→4) glucosidic type (∼70%). This reuteran also contains alpha-(1→6)-linked glucosyl units...
article 2005
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Kralj, S. (author), van Geel-Schutten, G.H. (author), van der Maarel, M.J.E.C. (author), Dijkhuizen, L. (author), TNO Voeding Centraal Instituut voor Voedingsonderzoek TNO (author)
Lactobacillus reuteri strain 121 uses sucrose for synthesis of a unique, soluble glucan ('reuteran') with mainly α-(1→4) glucosidic linkages. The gene (gtfA) encoding this glucansucrase enzyme had previously been characterized. Here, a detailed biochemical and molecular analysis of the GTFA enzyme is presented. This is believed to be the first...
article 2004
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Kralj, S. (author), van Geel-Schutten, G.H. (author), Dondorff, M.M.G. (author), Kirsanovs, S. (author), van der Maarel, M.J.E.C. (author), Dijkhuizen, L. (author), TNO Voeding Centraal Instituut voor Voedingsonderzoek TNO (author)
Members of the genera Streptococcus and Leuconostoc synthesize various α-glucans (dextran, alternan and mutan). In Lactobacillus, until now, the only glucosyltransferase (GTF) enzyme that has been characterized is gtfA of Lactobacillus reuteri 121, the first GTF enzyme synthesizing a glucan (reuteran) that contains mainly α-(1 → 4) linkages...
article 2004
document
TNO Voeding Centraal Instituut voor Voedingsonderzoek TNO (author), Ozimek, L.K. (author), van Hijum, S.A.F.T. (author), van Koningsveld, G.A. (author), van der Maarel, M.J.E.C. (author), van Geel-Schutten, G.H. (author), Dijkhuizen, L. (author)
Bacterial fructosyltransferases (FTFs) are retaining-type glycosidases that belong to family 68 of glycoside hydrolases. Recently, the high-resolution 3D structure of the Bacillus subtilis levansucrase has been solved [Meng, G. and Futterer, K., Nat. Struct. Biol. 10 (2003) 935-941]. Based on this structure, the catalytic nucleophile, general...
article 2004
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van Hijum, S.A.F.T. (author), van Geel-Schutten, G.H. (author), Rahaoui, H. (author), van der Maarel, M.J.E.C. (author), Dijkhuizen, L. (author), TNO Voeding (author)
article 2002
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Kralj, S. (author), van Geel-Schutten, G.H. (author), Rahaoui, H. (author), Leer, R.J. (author), Faber, E.J. (author), van der Maarel, M.J.E.C. (author), Dijkhuizen, L. (author), TNO Voeding (author)
article 2002
document
van Geel-Schutten, G.H. (author), Rahaoui, H. (author), Dijkhuizen, L. (author), van Hijum, S.A.F.T. (author), TNO Voeding (author)
patent 2001
document
Centraal Instituut voor Voedingsonderzoek TNO (author), van Geel-Schutten, G.H. (author)
doctoral thesis 2000
document
van Geel-Schutten, G.H. (author), Faber, E.J. (author), Smit, E. (author), Bonting, K. (author), Smith, M.R. (author), ten Brink, B. (author), Kamerling, J.P. (author), Vliegenthart, J.F.G. (author), Dijkhuizen, L. (author)
article 1999
document
Centraal Instituut voor Voedingsonderzoek TNO TNO Voeding (author), van Geel-Schutten, G.H. (author), Faber, E.J. (author), Smit, E. (author), Bonting, K. (author), Smith, M.R. (author), ten Brink, B. (author), Kamerling, J.P. (author), Vliegenthart, J.F.G. (author), Dijkhuizen, L. (author)
Lactobacillus reuteri LB 121 cells growing on sucrose synthesize large amounts of a glucan (D-glucose) and a fructan (D-fructose) with molecular masses of 3,500 and 150 kDa, respectively. Methylation studies and 13C or 1H nuclear magnetic resonance analysis showed that the glucan has a unique structure consisting of terminal, 4-substituted, 6...
article 1999
document
van Geel-Schutten, G.H. (author), Flesch, F. (author), ten Brink, B. (author), Smith, M.R. (author), Dijkhuizen, L. (author), Centraal Instituut voor Voedingsonderzoek TNO (author)
A total of 182 Lactobacillus strains were screened for production of extracellular polysaccharides (EPS) by a new method: growth in liquid media with high sugar concentrations. Sixty EPS-positive strains were identified; 17 strains produced more than 100 mg/l soluble EPS. Sucrose was an excellent substrate for abundant EPS synthesis. The ability...
article 1998
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