David J. Craik
Affiliations: | IMB | University of Queensland, Saint Lucia, Queensland, Australia |
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Children
Sign in to add traineeUlf Göransson | post-doc | 2002-2004 | University of Queensland (Chemistry Tree) |
Collaborators
Sign in to add collaboratorDavid J. Adams | collaborator | 1998- | University of Queensland |
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Publications
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Philippe GJ, Huang YH, Mittermeier A, et al. (2024) Delivery to, and Reactivation of, the p53 Pathway in Cancer Cells Using a Grafted Cyclotide Conjugated with a Cell-Penetrating Peptide. Journal of Medicinal Chemistry |
Baquero F, Beis K, Craik DJ, et al. (2024) The pearl jubilee of microcin J25: thirty years of research on an exceptional lasso peptide. Natural Product Reports |
Muratspahić E, Aslanoglou D, White AM, et al. (2023) Development of Melanocortin 4 Receptor Agonists by Exploiting Animal-Derived Macrocyclic, Disulfide-Rich Peptide Scaffolds. Acs Pharmacology & Translational Science. 6: 1373-1381 |
Tyler TJ, Durek T, Craik DJ. (2023) Native and Engineered Cyclic Disulfide-Rich Peptides as Drug Leads. Molecules (Basel, Switzerland). 28 |
Jackson MA, Xie J, Nguyen LTT, et al. (2023) Plant-based production of an orally active cyclotide for the treatment of multiple sclerosis. Transgenic Research |
Cao Q, Ge C, Wang X, et al. (2023) Designing antimicrobial peptides using deep learning and molecular dynamic simulations. Briefings in Bioinformatics |
Zhang Y, Wang L, Tombling BJ, et al. (2022) Improving Stability Enhances In Vivo Efficacy of a PCSK9 Inhibitory Peptide. Journal of the American Chemical Society |
White AM, Dellsén A, Larsson N, et al. (2022) Late-Stage Functionalization with Cysteine Staples Generates Potent and Selective Melanocortin Receptor-1 Agonists. Journal of Medicinal Chemistry |
Cardoso MH, Chan LY, Cândido ES, et al. (2022) An N-capping asparagine-lysine-proline (NKP) motif contributes to a hybrid flexible/stable multifunctional peptide scaffold. Chemical Science. 13: 9410-9424 |
Dang TT, Huang YH, Ott S, et al. (2022) The acyclotide ribe 31 from Rinorea bengalensis has selective cytotoxicity and potent insecticidal properties in Drosophila. The Journal of Biological Chemistry. 102413 |