EquipmentBruker Avance III HD 600MHz Single Bay NMR Spectrometer with Triple-resonance Probe and Cooled SampleJet
West, Room 742
University of Canterbury
School of Biological Sciences
Ilam Rd
Christchurch
8041
New Zealand
PEOPLE
- Associate Professor
- School of Biological Sciences
- Associate ProfessorSchool of Biological Sciences
My lab is focused on studying the structures, mechanisms and interactions of aggregating proteins. We are particularly interested in a certain fibre-like structure that is formed by a great variety of proteins called amyloid fibrils. We study amyloid proteins involved in disease, including Alzheimer's disease and motor neuron disease, as well as those that have functions in important biological processes.
The kinds of questions we are looking at include:
1) What are the functions of amyloids and aggregates in different biological processes?
2) What are the structural details of aggregates that have functional and disease-relevant roles?
3) How do other proteins and small molecules affect the aggregation of disease-relevant proteins, and at what stage do they affect aggregation? 4) What sequences are important for aggregation processes, and how can these be interfered with?
5) How do disease mutations affect aggregation or functional behaviour of aggregation-prone proteins?
We studying these topics with a range of structural and biophysical techniques including NMR spectroscopy (both solid-state and solution state), fluorescence-based aggregation assays, electron microscopy.
For more info, check out our webpage at www.morris-lab.comMy lab is focused on studying the structures, mechanisms and interactions of aggregating proteins. We are particularly interested in a certain fibre-like structure that is formed by a great variety of proteins called amyloid fibrils. We study amyloid proteins involved in disease, including Alzheimer's disease and motor neuron disease, as well as those that have functions in important biological processes.
The kinds of questions we are looking at include:
1) What are the functions of amyloids and aggregates in different biological processes?
2) What are the structural details of aggregates that have functional and disease-relevant roles?
3) How do other proteins and small molecules affect the aggregation of disease-relevant proteins, and at what stage do they affect aggregation? 4) What sequences are important for aggregation processes, and how can these be interfered with?
5) How do disease mutations affect aggregation or functional behaviour of aggregation-prone proteins?
We studying these topics with a range of structural and biophysical techniques including NMR spectroscopy (both solid-state and solution state), fluorescence-based aggregation assays, electron microscopy.
For more info, check out our webpage at www.morris-lab.com- Faculty of Science
- Registered to supervise Master's/Doctoral students
- 3 Good Health and Well Being
- 4 Quality Education
- 9 Industry, Innovation and Infrastructure
- 10 Reduced Inequalities
- Collaborative research projects
- Industry partnerships & innovation
- Outreach & community engagement
Fields of Research- Biological sciences
- Chemical sciences
- Biomedical and clinical sciences
- Physical sciences
- Biochemistry and cell biology
- Medicinal and biomolecular chemistry
- Medical biochemistry and metabolomics
- Medical and biological physics
- Macromolecular and materials chemistry
- Microbiology
- Structural biology (incl. macromolecular modelling)
- Cell development, proliferation and death
- Signal transduction
- Characterisation of biological macromolecules
- Molecular medicine
- Proteins and peptides
- Medical biochemistry - amino acids and metabolites
- Medical biochemistry - proteins and peptides (incl. medical proteomics)
- Medical biotechnology diagnostics (incl. biosensors)
- Biological physics