Authors:
Boels, IC
van Kranenburg, R
Hugenholtz, J
Kleerebezem, M
de Vos, WM
Citation: Ic. Boels et al., Sugar catabolism and its impact on the biosynthesis and engineering of exopolysaccharide production in lactic acid bacteria, INT DAIRY J, 11(9), 2001, pp. 723-732
Citation: Fl. De Felipe et J. Hugenholtz, Purification and characterisation of the water forming NADH-oxidase from Lactococcus lactis, INT DAIRY J, 11(1-2), 2001, pp. 37-44
Authors:
Sybesma, W
Hugenholtz, J
Mierau, I
Kleerebezem, M
Citation: W. Sybesma et al., Improved efficiency and reliability of RT-PCR using tag-extended RT primers and temperature gradient PCR, BIOTECHNIQU, 31(3), 2001, pp. 466
Authors:
Grobben, GJ
Peters, SWPG
Wisselink, HW
Weusthuis, RA
Hoefnagel, MHN
Hugenholtz, J
Eggink, G
Citation: Gj. Grobben et al., Spontaneous formation of a mannitol-producing variant of Leuconostoc pseudomesenteroides grown in the presence of fructose, APPL ENVIR, 67(6), 2001, pp. 2867-2870
Authors:
Looijesteijn, PJ
van Casteren, WHM
Tuinier, R
Doeswijk-Voragen, CHL
Hugenholtz, J
Citation: Pj. Looijesteijn et al., Influence of different substrate limitations on the yield, composition andmolecular mass of exopolysaccharides produced by Lactococcus lactis subsp cremoris in continuous cultures, J APPL MICR, 89(1), 2000, pp. 116-122
Citation: M. Kleerebezem et al., Lactic acid bacteria as a cell factory: rerouting of carbon metabolism in Lactococcus lactis by metabolic engineering, ENZYME MICR, 26(9-10), 2000, pp. 840-848
Citation: Pj. Looijesteijn et J. Hugenholtz, Uncoupling of growth and exopolysaccharide production by Lactococcus lactis subsp cremoris NIZO B40 and optimization of its synthesis, J BIOSCI BI, 88(2), 1999, pp. 178-182
Authors:
Hols, P
Kleerebezem, M
Schanck, AN
Ferain, T
Hugenholtz, J
Delcour, J
de Vos, WM
Citation: P. Hols et al., Conversion of Lactococcus lactis from homolactic to homoalanine fermentation through metabolic engineering, NAT BIOTECH, 17(6), 1999, pp. 588-592
Citation: J. Hugenholtz et M. Kleerebezem, Metabolic engineering of lactic acid bacteria: overview of the approaches and results of pathway rerouting involved in food fermentations, CURR OPIN B, 10(5), 1999, pp. 492-497
Citation: Fl. De Felipe et J. Hugenholtz, Pyruvate flux distribution in NADH-oxidase-overproducing Lactococcus lactis strain as a function of culture conditions, FEMS MICROB, 179(2), 1999, pp. 461-466
Authors:
Looijesteijn, PJ
Boels, IC
Kleerebezem, M
Hugenholtz, J
Citation: Pj. Looijesteijn et al., Regulation of exopolysaccharide production by Lactococcus lactis subsp cremoris by the sugar source, APPL ENVIR, 65(11), 1999, pp. 5003-5008
Authors:
Hols, P
Ramos, A
Hugenholtz, J
Delcour, J
de Vos, WM
Santos, H
Kleerebezem, M
Citation: P. Hols et al., Acetate utilization in Lactococcus lactis deficient in lactate dehydrogenase: a rescue pathway for maintaining redox balance, J BACT, 181(17), 1999, pp. 5521-5526
Authors:
Neves, AR
Ramos, A
Nunes, MC
Kleerebezem, M
Hugenholtz, J
de Vos, WM
Almeida, J
Santos, H
Citation: Ar. Neves et al., In vivo nuclear magnetic resonance studies of glycolytic kinetics in Lactococcus lactis, BIOTECH BIO, 64(2), 1999, pp. 200-212
Authors:
Kleerebezem, M
van Kranenburg, R
Tuinier, R
Boels, IC
Zoon, P
Looijesteijn, E
Hugenholtz, J
de Vos, WM
Citation: M. Kleerebezem et al., Exopolysaccharides produced by Lactococcus lactis: from genetic engineering to improved rheological properties?, ANTON LEEUW, 76(1), 1999, pp. 357-365