Bryan A. Daniels
Affiliations: | McGill University, Montreal, QC, Canada |
Area:
ionotropic glutamate receptors, synaptic physiology, retinaGoogle:
"Bryan Daniels"Mean distance: 16 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorWilliam Harold Baldridge | grad student | Dalhousie | |
Derek Bowie | post-doc | McGill |
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Publications
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Dawe GB, Aurousseau MR, Daniels BA, et al. (2015) Retour aux sources: defining the structural basis of glutamate receptor activation. The Journal of Physiology. 593: 97-110 |
Musgaard M, Daniels B, Dawe GB, et al. (2015) Can Activation and Desensitization Properties of iGluRs Be Predicted and Understood by Studying the LBD Dimer Dynamics? Biophysical Journal. 108: 287a-288a |
Dawe GB, Aurousseau MR, Daniels BA, et al. (2014) Retour aux sources: defining the structural basis of glutamate receptor activation. The Journal of Physiology |
Accardi MV, Daniels BA, Brown PM, et al. (2014) Mitochondrial reactive oxygen species regulate the strength of inhibitory GABA-mediated synaptic transmission. Nature Communications. 5: 3168 |
Daniels BA, Aurousseau MR, Musgaard M, et al. (2014) Functional Consequences of Cysteine Mutations at the Kainate Receptor Dimer Interface Biophysical Journal. 106: 150a |
Dawe GB, Musgaard M, Andrews ED, et al. (2013) Defining the structural relationship between kainate-receptor deactivation and desensitization. Nature Structural & Molecular Biology. 20: 1054-61 |
Daniels BA, Andrews ED, Aurousseau MR, et al. (2013) Crosslinking the ligand-binding domain dimer interface locks kainate receptors out of the main open state. The Journal of Physiology. 591: 3873-85 |
Musgaard M, Daniels B, Andrews E, et al. (2013) Atomistic Simulations Explain Mutational Effects on Ion Modulation and Kainate Receptor Activity Biophysical Journal. 104: 274a-275a |
Dawe GB, Daniels BA, Andrews ED, et al. (2013) Re-Evaluating a Proposed Mechanism for Ion Modulation in Kainate Receptors Biophysical Journal. 104: 274a |
Daniels BA, Wood L, Tremblay F, et al. (2012) Functional evidence for D-serine inhibition of non-N-methyl-D-aspartate ionotropic glutamate receptors in retinal neurons. The European Journal of Neuroscience. 35: 56-65 |