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Results: 54
Number of items: 54
  • van der Kraan, M. I. A., Nazmi, K., van 't Hof, W., van Nieuw Amerongen, A., Veerman, E. C. I., & Bolscher, J. G. M. (2006). Distinct bactericidal activities of bovine lactoferrin peptides LF-ampin 268-284 and LF-ampin 265-284: Asp-Leu-Ile sequence makes the difference. Biochemistry and Cell Biology, 84, 358-362. https://doi.org/10.1139/O06-042
  • den Hertog, A. L., van Marle, J., Veerman, E. C. I., Valentijn-Benz, M., Nazmi, K., Kalay, H., Grün, C. H., van 't Hof, W., Bolscher, J. G. M., & van Nieuw Amerongen, A. (2006). The human cathelicidin peptide LL-37 and truncated variants induce segregation of lipids and proteins in the plasma membrane of Candida albicans. Biological chemistry, 387, 1495-1502. https://doi.org/10.1515/BC.2006.187
  • Bolscher, J. G. M., van der Kraan, M. I. A., Nazmi, K., Kalay, H., Grün, C. H., Groenink, J., van 't Hof, W., Veerman, E. C. I., & van Nieuw Amerongen, A. (2006). A one-enzyme strategy to release an antimicrobial peptide from the LFampin-domain of bovine lactoferrin. Peptides, 27, 1-9. https://doi.org/10.1016/j.peptides.2005.06.012
  • van der Kraan, M. I. A., Nazmi, K., Teeken, A., Groenink, J., van 't Hof, W., Veerman, E. C. I., Bolscher, J. G. M., & van Nieuw Amerongen, A. (2005). Lactoferrampin, an antimicrobial peptide of bovine lactoferrin, exerts its candidacidal activity by a cluster of positively charged residues at the C-terminus in combination with a helix facilitating N-terminal part. Biological chemistry, 386, 137-142. https://doi.org/10.1515/BC.2005.017
  • den Hertog, A. L., van Marle, J., van Veen, H. A., van 't Hof, W., Bolscher, J. G. M., Veerman, E. C. I., & van Nieuw Amerongen, A. (2005). Candidacidal effects of two antimicrobial peptides: histatin 5 causes small membrane defects, but LL-37 causes massive disruption of the cell membrane. Biochemical Journal, 388, 689-695. https://doi.org/10.1042/BJ20042099
  • van der Kraan, M. I. A., van Marle, J., Nazmi, K., Groenink, J., van 't Hof, W., Veerman, E. C. I., Bolscher, J. G. M., & van Nieuw Amerongen, A. (2005). Ultrastructural effects of antimicrobial peptides from bovine lactoferrin on the membranes of Candida albicans and Escherichia coli. A confocal and freeze-fracture electron microscopy study. Peptides, 26, 1537-1542. https://doi.org/10.1016/j.peptides.2005.02.011
  • van der Kraan, M. I. A., van der Made, C., Nazmi, K., van 't Hof, W., Groenink, J., Veerman, E. C. I., Bolscher, J. G. M., & van Nieuw Amerongen, A. (2005). Effect of amino acid substitutions on the candidacidal activity of LFampin 265-284. Peptides, 26, 2039-2097.
  • den Hertog, A. L., Wong Fong Sang, H. W., Kraayenhof, R., Bolscher, J. G. M., van 't Hof, W., Veerman, E. C. I., & van Nieuw Amerongen, A. (2004). Interactions of histatin 5 and histatin 5-derived peptides with liposome membranes: surface effects, translocation and permeabilization. Biochemical Journal, 379, 665-672. https://doi.org/10.1042/BJ20031785
  • Bikker, F. J., Ligtenberg, A. J. M., End, C., Renner, M., Blaich, S., Lyer, S., Wittig, R., van 't Hof, W., Veerman, E. C. I., Nazmi, K., de Blieck-Hogervorst, J. M. A., Kioschis, P., van Nieuw Amerongen, A., Poutska, A. M., & Mollenhauer, J. (2004). Bacteria-binding by DMBT1/SAG/gp-340 is confined to the VEVLXXXXW motif in its scavenger receptor cysteine-rich domains. The Journal of Biological Chemistry, 279, 47699-47703. https://doi.org/10.1074/jbc.M406095200
  • Veerman, E. C. I., Nazmi, K., van 't Hof, W., Bolscher, J. G. M., den Hertog, A. L., & van Nieuw Amerongen, A. (2004). Reactive oxygen species play no role in the candidacidal activity of the salivary antimicrobial peptide histatin 5. Biochemical Journal, 381, 447-452. https://doi.org/10.1042/BJ20040208
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