Overview
Availability
- Mr Fabian Rehm is:
- Available for supervision
Works
Search Professor Fabian Rehm’s works on UQ eSpace
2024
Journal Article
Repurposing a plant peptide cyclase for targeted lysine acylation
Rehm, Fabian B. H., Tyler, Tristan J., Zhou, Yan, Huang, Yen-Hua, Wang, Conan K., Lawrence, Nicole, Craik, David J. and Durek, Thomas (2024). Repurposing a plant peptide cyclase for targeted lysine acylation. Nature Chemistry, 2024 (9), 1-1. doi: 10.1038/s41557-024-01520-1
2022
Journal Article
Neurotoxic and cytotoxic peptides underlie the painful stings of the tree nettle Urtica ferox
Xie, Jing, Robinson, Samuel D., Gilding, Edward K., Jami, Sina, Deuis, Jennifer R., Rehm, Fabian B.H., Yap, Kuok, Ragnarsson, Lotten, Chan, Lai Yue, Hamilton, Brett R., Harvey, Peta J., Craik, David J., Vetter, Irina and Durek, Thomas (2022). Neurotoxic and cytotoxic peptides underlie the painful stings of the tree nettle Urtica ferox. Journal of Biological Chemistry, 298 (8) 102218, 1-12. doi: 10.1016/j.jbc.2022.102218
2022
Journal Article
Cystine knot peptides with tuneable activity and mechanism
Li, Choi Yi, Rehm, Fabian B. H., Yap, Kuok, Zdenek, Christina N., Harding, Maxim D., Fry, Bryan G., Durek, Thomas, Craik, David J. and Veer, Simon J. (2022). Cystine knot peptides with tuneable activity and mechanism. Angewandte Chemie, 61 (19) e202200951, e202200951. doi: 10.1002/ange.202200951
2017
Journal Article
Ribosomally-synthesised cyclic peptides from plants as drug leads and pharmaceutical scaffolds
Craik, David J., Lee, Meng-Han, Rehm, Fabian B.H., Tombling, Benjamin, Doffek, Benjamin and Peacock, Hayden (2017). Ribosomally-synthesised cyclic peptides from plants as drug leads and pharmaceutical scaffolds. Bioorganic and Medicinal Chemistry, 26 (10), 2727-2737. doi: 10.1016/j.bmc.2017.08.005
2017
Journal Article
Bioengineering toward direct production of immobilized enzymes: A paradigm shift in biocatalyst design
Rehm, Fabian B. H., Chen, Shuxiong and Rehm, Bernd H. A. (2017). Bioengineering toward direct production of immobilized enzymes: A paradigm shift in biocatalyst design. Bioengineered, 9 (1), 6-11. doi: 10.1080/21655979.2017.1325040
Supervision
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