Julie-Myrtille Bourgognon

University of Glasgow, Glasgow, Scotland, United Kingdom 
"Julie-Myrtille Bourgognon"
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Spiers JG, Cortina Chen HJ, Barry TL, et al. (2022) Redox stress and metal dys-homeostasis appear as hallmarks of early prion disease pathogenesis in mice. Free Radical Biology & Medicine. 192: 182-190
Bourgognon JM, Spiers JG, Robinson SW, et al. (2021) Inhibition of neuroinflammatory nitric oxide signaling suppresses glycation and prevents neuronal dysfunction in mouse prion disease. Proceedings of the National Academy of Sciences of the United States of America. 118
Bourgognon JM, Spiers JG, Scheiblich H, et al. (2018) Alterations in neuronal metabolism contribute to the pathogenesis of prion disease. Cell Death and Differentiation
Robinson SW, Bourgognon JM, Spiers JG, et al. (2018) Nitric oxide-mediated posttranslational modifications control neurotransmitter release by modulating complexin farnesylation and enhancing its clamping ability. Plos Biology. 16: e2003611
Bradley SJ, Bourgognon JM, Sanger HE, et al. (2016) M1 muscarinic allosteric modulators slow prion neurodegeneration and restore memory loss. The Journal of Clinical Investigation
Bradley SJ, Wiegman CH, Iglesias MM, et al. (2016) Mapping physiological G protein-coupled receptor signaling pathways reveals a role for receptor phosphorylation in airway contraction. Proceedings of the National Academy of Sciences of the United States of America
Butcher AJ, Bradley SJ, Prihandoko R, et al. (2016) An Antibody Biosensor Establishes the Activation of the M1 Muscarinic Acetylcholine Receptor during Learning and Memory. The Journal of Biological Chemistry. 291: 8862-75
Bourgognon JM, Schiavon E, Salah-Uddin H, et al. (2013) Regulation of neuronal plasticity and fear by a dynamic change in PAR1-G protein coupling in the amygdala. Molecular Psychiatry. 18: 1136-45
Attwood BK, Bourgognon JM, Patel S, et al. (2011) Neuropsin cleaves EphB2 in the amygdala to control anxiety. Nature. 473: 372-5
Poulin B, Butcher A, McWilliams P, et al. (2010) The M3-muscarinic receptor regulates learning and memory in a receptor phosphorylation/arrestin-dependent manner. Proceedings of the National Academy of Sciences of the United States of America. 107: 9440-5
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