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Dr Angeline Chan
Dr

Angeline Chan

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+61 7 344 36299

Works

Search Professor Angeline Chan’s works on UQ eSpace

54 works between 2009 and 2024

41 - 54 of 54 works

2015

Journal Article

Carcinogenic parasite secretes growth factor that accelerates wound healing and potentially promotes neoplasia

Smout, Michael J., Sotillo, Javier, Laha, Thewarach, Papatpremsiri, Atorich, Rinaldi, Gabriel, Pimenta, Rafael N., Chan, Lai Yue, Johnson, Michael S., Turnbull, Lynne, Whitchurch, Cynthia B., Giacomin, Paul R., Moran, Corey S., Golledge, Jonathan, Daly, Norelle, Sripa, Banchob, Mulvenna, Jason P., Brindley, Paul J. and Loukas, Alex (2015). Carcinogenic parasite secretes growth factor that accelerates wound healing and potentially promotes neoplasia. PLoS Pathogens, 11 (10) e1005209, e1005209. doi: 10.1371/journal.ppat.1005209

Carcinogenic parasite secretes growth factor that accelerates wound healing and potentially promotes neoplasia

2015

Journal Article

Identification, Characterization, and Three-Dimensional Structure of the Novel Circular Bacteriocin, Enterocin NKR-5-3B, from Enterococcus faecium

Himeno, Kohei, Rosengren, K. Johan, Inoue, Tomoko, Perez, Rodney H., Colgrave, Michelle L., Lee, Han Siean, Chan, Lai Y., Henriques, Sonia Troeira, Fujita, Koji, Ishibashi, Naoki, Zendo, Takeshi, Wilaipun, Pongtep, Nakayama, Jiro, Leelawatcharamas, Vichien, Jikuya, Hiroyuki, Craik, David J. and Sonomoto, Kenji (2015). Identification, Characterization, and Three-Dimensional Structure of the Novel Circular Bacteriocin, Enterocin NKR-5-3B, from Enterococcus faecium. Biochemistry, 54 (31), 4863-4876. doi: 10.1021/acs.biochem.5b00196

Identification, Characterization, and Three-Dimensional Structure of the Novel Circular Bacteriocin, Enterocin NKR-5-3B, from Enterococcus faecium

2015

Journal Article

In vivo efficacy of anuran rypsin inhibitory peptides against Staphylococcal Skin infection and the impact of peptide cyclization

Malik, U., Silva, O. N., Fensterseifer, I. C. M., Chan, A., Clark, R. J., Franco, O. L., Daly, N. L. and Craik, D. J. (2015). In vivo efficacy of anuran rypsin inhibitory peptides against Staphylococcal Skin infection and the impact of peptide cyclization. Antimicrobial Agents and Chemotherapy, 59 (4), 2113-2121. doi: 10.1128/AAC.04324-14

In vivo efficacy of anuran rypsin inhibitory peptides against Staphylococcal Skin infection and the impact of peptide cyclization

2014

Journal Article

The role of disulfide bonds in structure and activity of chlorotoxin

Ojeda, Paola G., Chan, Lai Y., Poth, Aaron G., Wang, Conan K. and Craik, David J. (2014). The role of disulfide bonds in structure and activity of chlorotoxin. Future Medicinal Chemistry, 6 (15), 1617-1628. doi: 10.4155/FMC.14.93

The role of disulfide bonds in structure and activity of chlorotoxin

2014

Journal Article

Semienzymatic cyclization of disulfide-rich peptides using sortase A

Jia, Xinying, Kwon, Soohyun, Wang, Ching-I Anderson, Huang, Yen-Hua, Chan, Lai Y., Tan, Chia Chia, Rosengren, K. Johan, Mulvenna, Jason P., Schroeder, Christina I. and Craik, David J. (2014). Semienzymatic cyclization of disulfide-rich peptides using sortase A. Journal of Biological Chemistry, Papers in Press (10), 1-25. doi: 10.1074/jbc.M113.539262

Semienzymatic cyclization of disulfide-rich peptides using sortase A

2013

Journal Article

Novel inhibitor cystine knot peptides from momordica charantia

He, Wen-Jun, Chan, Lai Yue, Clark, Richard J., Tang, Jun, Zeng, Guang-Zhi, Franco, Octavio L., Cantacessi, Cinzia, Craik, David J., Daly, Norelle L. and Tan, Ning-Hua (2013). Novel inhibitor cystine knot peptides from momordica charantia. PLoS ONE, 8 (10) e75334, e75334.1-e75334.10. doi: 10.1371/journal.pone.0075334

Novel inhibitor cystine knot peptides from momordica charantia

2013

Journal Article

Cyclotides as grafting frameworks for protein engineering and drug design applications

Poth, Aaron, Chan, Lai Y. and Craik, David J. (2013). Cyclotides as grafting frameworks for protein engineering and drug design applications. Biopolymers: Peptide Science, 100 (5), 480-491. doi: 10.1002/bip.22284

Cyclotides as grafting frameworks for protein engineering and drug design applications

2013

Journal Article

High-affinity cyclic peptide matriptase inhibitors

Quimbar, Pedro, Malik, Uru, Sommerhoff, Christian P., Kaas, Quentin, Chan, Lai Y., Huang, Yen-Hua, Grundhuber, Maresa, Dunse, Kerry, Craik, David J., Anderson, Marilyn A. and Daly, Norelle L. (2013). High-affinity cyclic peptide matriptase inhibitors. Journal of Biological Chemistry, 288 (19), 13885-13896. doi: 10.1074/jbc.M113.460030

High-affinity cyclic peptide matriptase inhibitors

2013

Journal Article

A new family of cystine knot peptides from the seeds of Momordica cochinchinensis

Chan, Lai Yue, He, Wenjun, Tan, Ninghua, Zeng, Guangzhi, Craik, David J. and Daly, Norelle L. (2013). A new family of cystine knot peptides from the seeds of Momordica cochinchinensis. Peptides, 39 (1), 29-35. doi: 10.1016/j.peptides.2012.09.018

A new family of cystine knot peptides from the seeds of Momordica cochinchinensis

2012

Journal Article

Cyclic peptides arising by evolutionary parallelism via asparaginyl-endopeptidase–mediated biosynthesis

Mylne, Joshua S., Chan, Lai Yue, Chanson, Aurelie H., Daly, Norelle L., Schaefer, Hanno, Bailey, Timothy L., Nguyencong, Philip, Cascales, Laura and Craik, David J. (2012). Cyclic peptides arising by evolutionary parallelism via asparaginyl-endopeptidase–mediated biosynthesis. Plant Cell, 24 (7), 2765-2778. doi: 10.1105/tpc.112.099085

Cyclic peptides arising by evolutionary parallelism via asparaginyl-endopeptidase–mediated biosynthesis

2012

Other Outputs

Engineering and discovery of bioactive disulfide-rich peptides

Chan, Lai Yue (2012). Engineering and discovery of bioactive disulfide-rich peptides. PhD Thesis, Institute for Molecular Bioscience, The University of Queensland.

Engineering and discovery of bioactive disulfide-rich peptides

2011

Journal Article

Isolation and characterization of cytotoxic cyclotides from Viola philippica

He, Wenjun, Chan, Lai Yue, Zeng, Guangzhi, Daly, Norelle L., Craik, David J. and Tan, Ninghua (2011). Isolation and characterization of cytotoxic cyclotides from Viola philippica. Peptides, 32 (8), 1719-1723. doi: 10.1016/j.peptides.2011.06.016

Isolation and characterization of cytotoxic cyclotides from Viola philippica

2011

Conference Publication

Naturally Occurring Cyclic Peptides as Templates in Drug Design

Craik, David J., Daly, Norelle L., Chan, Angeline, Mylne, Joshua S., Poth, Aaron and Colgrave, Michelle (2011). Naturally Occurring Cyclic Peptides as Templates in Drug Design. 22nd American Peptide Symposium, San Diego Ca, Jun 25-30, 2011. Malden MA, United States: Wiley-Blackwell Publishing.

Naturally Occurring Cyclic Peptides as Templates in Drug Design

2011

Conference Publication

Discovery and applications of naturally occurring cyclic peptides

Craik, D., Poth, A., Colgrave, M., Akcan, M., Oku, B., Chan, A. and Daly, N. (2011). Discovery and applications of naturally occurring cyclic peptides. 59th International Congress and Annual Meeting of the Society for Medicinal Plant and Natural Product Research, Antalya, Turkey, 4-9 September 2011. Stuttgart, Germany: Georg Thieme Verlag. doi: 10.1055/s-0031-1282086

Discovery and applications of naturally occurring cyclic peptides

Funding

Past funding

  • 2017
    Dual-targeting anti-angiogenic cyclic peptides as potential drug leads for cancer therapy
    The Cass Foundation Limited
    Open grant
  • 2016 - 2017
    Dr Lai Yue (Angeline) Chan - Maternity Funding (Advance Queensland Women's Academic Fund)
    Queensland Government Advance Queensland Women's Academic Fund
    Open grant

Supervision

Availability

Dr Angeline Chan is:
Available for supervision

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Supervision history

Current supervision

  • Doctor Philosophy

    Development of novel cell penetrating peptides as cancer therapies.

    Associate Advisor

    Other advisors: Professor David Craik

  • Doctor Philosophy

    Investigating the antifungal activity of cyclotides from butterfly pea

    Associate Advisor

    Other advisors: Professor David Craik

Completed supervision

Media

Enquiries

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