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Results: 11
Number of items: 11
  • Wever, R., & van Herk, T. (2012). Hydrolysis and formation of P-O bonds. In K. Drauz, H. Gröger, & O. May (Eds.), Enzyme catalysis in organic synthesis. - 3rd ed. (pp. 1001-1033). Wiley-VCH. https://doi.org/10.1002/9783527639861.ch25
  • Auriol, D., ter Halle, R., Lefèvre, F., Visser, D. F., Gordon, G. E. R., Bode, M. L., Mathiba, K., Brady, D., De Winter, K., Desmet, T., Cerdobbel, A., Soetaert, W., van Herk, T., Hartog, A. F., Wever, R., Brzezińska-rodak, M., Klimek-Ochab, M., Żymańczyk-Duda, E., Mukherjee, J., ... Gruber-Khadjawi, M. (2012). Transferases for alkylation, glycosylation and phosphorylation. In J. Whittall, & P. W. Sutton (Eds.), Practical methods for biocatalysis and biotransformations (Vol. 2, pp. 231-262). Wiley. https://doi.org/10.1002/9781119943426.ch9
  • Kim, B. G., Ahn, J. H., Sello, G., Di Gennaro, P., van Herk, T., Hartog, A. F., Wever, R., Oroz-Guinea, I., Sánchez-Moreno, I., García-Junceda, E., Wu, B., Szymanski, W., Feringa, B. L., Janssen, D. B., Villo, L., Kreen, M., Kudryashova, M., Metsala, A., Tamp, S., ... Eddowes, P. (2012). Tandem and sequential multi-enzymatic syntheses. In J. Whittall, & P. W. Sutton (Eds.), Practical methods for biocatalysis and biotransformations (Vol. 2, pp. 313-346). Wiley. https://doi.org/10.1002/9781119943426.ch12
  • Babich, L., van Hemert, J. C., Bury, A., Hartog, A. F., Falcicchio, P., van der Oost, J., van Herk, T., Wever, R., & Rutjes, F. P. J. T. (2011). Synthesis of non-natural carbohydrates from glycerol and aldehydes in a one-pot four-enzyme cascade reaction. Green Chemistry, 13(10), 2895-2900. https://doi.org/10.1039/c1gc15429j
  • Hartog, A. F., van Herk, T., & Wever, R. (2011). Efficient regeneration of NADPH in a 3-enzyme cascade reaction by in situ generation of glucose 6-phosphate from glucose and pyrophosphate. Advanced Synthesis & Catalysis, 353(13), 2339-2344. https://doi.org/10.1002/adsc.201100198
  • van Herk, T., Hartog, A. F., Babich, L., Schoemaker, H. E., & Wever, R. (2009). Improvement of an acid phosphatase/DHAP-dependent aldolase cascade reaction by using directed evolution. ChemBioChem, 10(13), 2230-2235. https://doi.org/10.1002/cbic.200900102
  • Open Access
    van Herk, T. (2008). Bacterial class A acid phosphatases as versatile tools in organic synthesis. [Thesis, fully internal, Universiteit van Amsterdam].
  • van Herk, T., Hartog, A. F., Ruijssenaars, H. J., Kerkman, R., Schoemaker, H. E., & Wever, R. (2007). Optimization of the kinetic resolution of the DL-phosphomonoesters of threonine and serine by random mutagenesis of the acid phosphatase from Salmonella enterica. Advanced Synthesis & Catalysis, 349(8+9), 1349-1352. https://doi.org/10.1002/adsc.200700041
  • van Herk, T., Hartog, A. F., Schoemaker, H. E., & Wever, R. (2006). Simple Enzymatic in situ Generation of Dihydroxyacetone Phosphate and Its Use in a Cascade Reaction for the Production of Carbohydrates: Increased Efficiency by Phosphate Cycling. Journal of Organic Chemistry, 71(16), 6244-6247. https://doi.org/10.1021/jo060644a
  • van Herk, T., Hartog, A. F., van der Burg, A. M., & Wever, R. (2005). Regioselective phosphorylation of carbohydrates and various alcohols by bacterial acid phosphatases; probing the substrate specificity of the enzyme from Shigella flexneri. Advanced Synthesis & Catalysis, 347(7+8), 1155-1162. https://doi.org/10.1002/adsc.200505072
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