Gideon John Davies

Contact details

Type of addressPostal address
Postal codeYO10 5DD
CountryUnited Kingdom
Address lines
  • Chemistry
    University of York
    Heslington
    York
    YO10 5DD

Phone: (01904) 328260

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Prof. Gideon John Davies, FRS, FMedSci

Professor

  1. 2020
  2. Mechanistic Insights into the Chaperoning of Human Lysosomal-Galactosidase Activity: Highly Functionalized Aminocyclopentanes and C-5a-Substituted Derivatives of 4-epi-Isofagomine

    Weber, P., Thonhofer, M., Averill, S., Davies, G. J., Santana, A. G., Müller, P., Nasseri, S. A., Offen, W. A., Pabst, B. M., Paschke, E., Schalli, M., Torvisco, A., Tschernutter, M., Tysoe, C., Windischhofer, W., Withers, S. G., Wolfsgruber, A., Wrodnigg, T. M. & Stütz, A. E., 3 Sep 2020

    Article in MOLECULES

  3. Glycosylated cyclophellitol-derived activity-based probes and inhibitors for cellulases

    De Boer, C., McGregor, N. G. S., Peterse, E., Schröder, S. P., Florea, B. I., Jiang, J., Reijngoud, J., Ram, A. F. J., Van Der Marel, G. A., Van Wezel, G. P., Codee, J. D. C., Overkleeft, H. S. & Davies, G. J., 28 Jul 2020

    Article in RSC Chemical Biology

  4. Profiling substrate promiscuity of wild-type sugar kinases for multifluorinated monosaccharides

    Keenan, T., Parmeggiani, F., Malassis, J., Fontenelle, C., Vendeville, J-B., Offen, W. A., Both, P., Huang, K., Marchesi, A., Heyam, A. P., Young, C., Charnock, S. J., Davies, G. J., Linclau, B., Flitsch, S. L. & Fascione, M. A., 2 Jul 2020

    Article in Cell Chemical Biology

  5. An epoxide intermediate in glycosidase catalysis

    Sobala, L. F., Speciale, G., Zhu, S., Raich, L., Sannikova, N., Thompson, A. J., Hakki, Z., Lu, D., Abadi, S. S. K., Lewis, A. R., Rojas-Cervellera, V., Bernardo-Seisdedos, G., Zhang, Y., Millet, O., Jiménez-Barbero, J., Bennet, A. J., Sollogoub, M., Rovira, C., Davies, G. J. & Williams, S. J., 27 May 2020

    Article in ACS Central Science

  6. A sulfoglycolytic Entner-Doudoroff pathway in Rhizobium leguminosarum bv. trifolii SRDI565

    Li, J., Epa, R., Scott, N. E., Skoneczny, D., Sharma, M., Snow, A. J. D., Lingford, J. P., Goddard-Borger, E. D., Davies, G. J., McConville, M. J. & Williams, S. J., 22 May 2020

    Article in Applied and Environmental Microbiology

  7. A Direct Fluorescent Activity Assay for Glycosyltransferases Enables Convenient High‐Throughput Screening: Application to O‐GlcNAc Transferase

    Alteen, M. G., Gros, C., Meek, R. W., Cardoso, D. A., Busmann, J. A., Sangouard, G., Deen, M. C., Tan, H-Y., Shen, D. L., Russell, C. C., Davies, G. J., Robinson, P. J., McCluskey, A. & Vocadlo, D. J., 2 Apr 2020

    Article in Angewandte Chemie International Edition

  8. Copper oxygenases

    Walton, P. H., Steward, M., Lindley, P., Paradisi, A. & Davies, G. J., 1 Apr 2020, (Accepted/In press) Comprehensive Coordination Chemistry III. Que, L. & Lu, Y. (eds.). ELSEVIER ACADEMIC PRESS INC, p. 1-24 24 p.

    Research output: Chapter in Book/Report/Conference proceedingChapter

  9. Rational Design of Mechanism-Based Inhibitors and Activity-Based Probes for the Identification of Retaining α-l-Arabinofuranosidases

    McGregor, N. G. S., Artola, M., Nin-Hill, A., Linzel, D., Haon, M., Reijngoud, J., Ram, A., Rosso, M. N., Van Der Marel, G. A., Codeé, J. D. C., Van Wezel, G. P., Berrin, J. G., Rovira, C., Overkleeft, H. S. & Davies, G. J., 11 Mar 2020

    Article in Journal of the American Chemical Society

  10. Dynamic structural changes accompany production of dihydroxypropanesulfonate by sulfolactaldehyde reductase

    Sharma, M., Abayakoon, P., Lingford, J. P., Epa, R., John, A., Jin, Y., Goddard-Borger, E. D., Davies, G. J. & Williams, S. J., 30 Jan 2020

    Article in ACS Catalysis

  11. Discovering the Microbial Enzymes Driving Drug Toxicity with Activity-Based Protein Profiling

    Jariwala, P. B., Pellock, S. J., Cloer, E. W., Artola, M., Simpson, J. B., Bhatt, A. P., Walton, W. G., Roberts, L. R., Davies, G. J., Overkleeft, H. S. & Redinbo, M. R., 17 Jan 2020

    Article in ACS Chemical Biology

  12. 2019
  13. Crystal structure and substrate interactions of an unusual fungal non-CBM carrying GH26 endo-β-mannanase from Yunnania penicillata

    Freiesleben, P. V., Moroz, O. V., Blagova, E., Wiemann, M., Spodsberg, N., Agger, J. W., Davies, G. J., Wilson, K. S., Stålbrand, H., Meyer, A. S. & Krogh, K. B. R. M., 1 Dec 2019

    Article in Scientific Reports

  14. An overview of activity-based probes for glycosidases

    Wu, L., Armstrong, Z., Schröder, S. P., Boer, C. D., Artola, M., Aerts, J. M. F. G., Overkleeft, H. S. & Davies, G. J., Dec 2019

    Article in Current Opinion in Chemical Biology

  15. Inverting family GH156 sialidases define an unusual catalytic motif for glycosidase action

    Bule, P., Chuzel, L., Blagova, E., Wu, L., Gray, M. A., Henrissat, B., Rapp, E., Bertozzi, C. R., Taron, C. H. & Davies, G. J., 23 Oct 2019

    Article in Nature Communications

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