Michael Hollmann

Affiliations: 
Ruhr University Bochum, Bochum, Nordrhein-Westfalen, Germany 
Area:
ionotropic glutamate receptors
Website:
http://www.rub.de/receptor-bioch
Google:
"Michael Hollmann"
Mean distance: 14.69 (cluster 11)
 
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Publications

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Ung DC, Pietrancosta N, Badillo EB, et al. (2024) GRID1/GluD1 homozygous variants linked to intellectual disability and spastic paraplegia impair mGlu1/5 receptor signaling and excitatory synapses. Molecular Psychiatry
Gutti G, Leifeld J, Kakarla R, et al. (2023) Discovery of triazole-bridged aryl adamantane analogs as an intriguing class of multifunctional agents for treatment of Alzheimer's disease. European Journal of Medicinal Chemistry. 259: 115670
Masternak M, Koch A, Laulumaa S, et al. (2022) Differences between the GluD1 and GluD2 receptors revealed by GluD1 X-ray crystallography, binding studies and molecular dynamics. The Febs Journal
Gonda S, Giesen J, Sieberath A, et al. (2020) GluN2B but Not GluN2A for Basal Dendritic Growth of Cortical Pyramidal Neurons. Frontiers in Neuroanatomy. 14: 571351
Bliznyuk A, Hollmann M, Grossman Y. (2020) The Mechanism of NMDA Receptor Hyperexcitation in High Pressure Helium and Hyperbaric Oxygen. Frontiers in Physiology. 11: 1057
Pan H, Steixner-Kumar AA, Seelbach A, et al. (2020) Multiple inducers and novel roles of autoantibodies against the obligatory NMDAR subunit NR1: a translational study from chronic life stress to brain injury. Molecular Psychiatry
Schreiber JA, Schepmann D, Frehland B, et al. (2019) A common mechanism allows selective targeting of GluN2B subunit-containing N-methyl-D-aspartate receptors. Communications Biology. 2: 420
Schreiber JA, Schepmann D, Frehland B, et al. (2019) A common mechanism allows selective targeting of GluN2B subunit-containing -methyl-D-aspartate receptors. Communications Biology. 2: 420
Bliznyuk A, Hollmann M, Grossman Y. (2019) High Pressure Stress Response: Involvement of NMDA Receptor Subtypes and Molecular Markers. Frontiers in Physiology. 10: 1234
Holz A, Mülsch F, Schwarz MK, et al. (2019) Enhanced mGlu5 Signaling in Excitatory Neurons Promotes Rapid Antidepressant Effects via AMPA Receptor Activation. Neuron
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