Karl Peter Giese
Karl Peter Giese
Professor mof Neurobiology of Mental Health, King's College London
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Autophosphorylation at Thr286 of the α Calcium-Calmodulin Kinase II in LTP and Learning
KP Giese, NB Fedorov, RK Filipkowski, AJ Silva
Science 279 (5352), 870-873, 1998
Molecular basis of functional diversity of voltage‐gated potassium channels in mammalian brain.
W Stühmer, JP Ruppersberg, KH Schröter, B Sakmann, M Stocker, ...
The EMBO journal 8 (11), 3235-3244, 1989
Mouse P0 gene disruption leads to hypomyelination, abnormal expression of recognition molecules, and degeneration of myelin and axons
KP Giese, R Martini, G Lemke, P Soriano, M Schachner
Cell 71 (4), 565-576, 1992
Mice deficient for the glycoprotein show subtle abnormalities in myelin
D Montag, KP Giese, U Bartsch, R Martini, Y Lang, H Blüthmann, ...
Neuron 13 (1), 229-246, 1994
The roles of cyclin-dependent kinase 5 and glycogen synthase kinase 3 in tau hyperphosphorylation
F Plattner, M Angelo, KP Giese
Journal of Biological Chemistry 281 (35), 25457-25465, 2006
Glycogen synthase kinase‐3 inhibition is integral to long‐term potentiation
C Hooper, V Markevich, F Plattner, R Killick, E Schofield, T Engel, ...
European journal of Neuroscience 25 (1), 81-86, 2007
Protein zero (P0)–deficient mice show myelin degeneration in peripheral nerves characteristic of inherited human neuropathies
R Martini, J Zielasek, KV Toyka, KP Giese, M Schachner
Nature genetics 11 (3), 281-286, 1995
Inhibitory autophosphorylation of CaMKII controls PSD association, plasticity, and learning
Y Elgersma, NB Fedorov, S Ikonen, ES Choi, M Elgersma, OM Carvalho, ...
Neuron 36 (3), 493-505, 2002
The roles of protein kinases in learning and memory
KP Giese, K Mizuno
Learning & memory 20 (10), 540-552, 2013
Mutant mice and neuroscience: recommendations concerning genetic background
AJ Silva, EM Simpson, JS Takahashi, HP Lipp, S Nakanishi, JM Wehner, ...
Neuron 19 (4), 755-759, 1997
Functional and Molecular Aspects of Voltage‐Gated K+ Channel β Subunits
O Pongs, T Leicher, M Berger, J Roeper, R BÄHRING, D Wray, KP Giese, ...
Annals of the New York Academy of Sciences 868 (1), 344-355, 1999
Abnormal Hippocampal Spatial Representations in αCaMKIIT286A and CREBαΔ− Mice
YH Cho, KP Giese, H Tanila, AJ Silva, H Eichenbaum
Science 279 (5352), 867-869, 1998
Memory reconsolidation engages only a subset of immediate-early genes induced during consolidation
LSJ von Hertzen, KP Giese
Journal of Neuroscience 25 (8), 1935-1942, 2005
Collapsin response mediator protein‐2 hyperphosphorylation is an early event in Alzheimer’s disease progression
AR Cole, W Noble, L Aalten, F Plattner, R Meimaridou, D Hogan, M Taylor, ...
Journal of neurochemistry 103 (3), 1132-1144, 2007
Reduced K+ channel inactivation, spike broadening, and after-hyperpolarization in Kvβ1. 1-deficient mice with impaired learning
KP Giese, JF Storm, D Reuter, NB Fedorov, LR Shao, T Leicher, O Pongs, ...
Learning & memory 5 (4), 257-273, 1998
Mice doubly deficient in the genes for P0 and myelin basic protein show that both proteins contribute to the formation of the major dense line in peripheral nerve myelin
R Martini, MH Mohajeri, S Kasper, KP Giese, M Schachner
Journal of Neuroscience 15 (6), 4488-4495, 1995
Mouse genetic approaches to investigating calcium/calmodulin-dependent protein kinase II function in plasticity and cognition
Y Elgersma, JD Sweatt, KP Giese
Journal of Neuroscience 24 (39), 8410-8415, 2004
Cyclin‐dependent kinase 5 in synaptic plasticity, learning and memory
M Angelo, F Plattner, KP Giese
Journal of neurochemistry 99 (2), 353-370, 2006
Calcium/calmodulin-dependent kinase II and Alzheimer’s disease
A Ghosh, KP Giese
Molecular brain 8 (1), 1-7, 2015
Hippocampus-dependent learning and memory is impaired in mice lacking the Ras-guanine-nucleotide releasing factor 1 (Ras-GRF1)
KP Giese, E Friedman, JB Telliez, NB Fedorov, M Wines, LA Feig, ...
Neuropharmacology 41 (6), 791-800, 2001
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