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Dissertation
Interaction proteomics of the glycine receptor alpha1 and alpha2 subunits: implications for human neurological disease
Sean Fraser
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Doctor of Philosophy, University of the Sunshine Coast, Queensland
2026
DOI:
https://doi.org/10.25907/01093
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Abstract
Neurogenetics
Receptors and membrane biology
Glycine receptors
GLRA2
neurodevelopmental disorders
loss-, gain- and alteration-of-function
hyperekplexia/startle disease
proteomics
immunoprecipitation
knockout control
protein-protein interactions
liquid chromatography-tandem mass spectrometry
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Title
Interaction proteomics of the glycine receptor alpha1 and alpha2 subunits: implications for human neurological disease
Authors
Sean Fraser - University of the Sunshine Coast, Queensland, School of Health
Contributors
Robert Harvey (Principal Supervisor) - University of the Sunshine Coast, Queensland, Thompson Institute
Georgia R Kafer (Co-Supervisor) - University of the Sunshine Coast, Queensland, Australian Centre for Pacific Islands Research
Awarding institution
University of the Sunshine Coast, Queensland
Degree awarded
Doctor of Philosophy
DOI
10.25907/01093
Grants
Unlocking the proteomics of synaptic glycine receptor complexes, DP250101477, Australian Research Council (Australia, Canberra) - ARC
Australian Government Research Training Program (RTP) Scholarship, RTP, Department of Education (Australia, Canberra)
Organisation Unit
School of Health
Language
English
Record Identifier
991252199602621
Output Type
Dissertation
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