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Proceedings of the National Academy of Sciences of the United States of America|June 2, 2011
Postsynaptic P/Q-type Ca2+ channel in Purkinje cell mediates synaptic competition and elimination in developing cerebellumKouichi Hashimoto, Mika Tsujita, Taisuke Miyazaki, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 8, 2008
Differential regulation of synaptic plasticity and cerebellar motor learning by the C-terminal PDZ-binding motif of GluRdelta2Wataru Kakegawa, Taisuke Miyazaki, Kyoichi Emi, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 4, 2011
Glutamate receptor δ2 is essential for input pathway-dependent regulation of synaptic AMPAR contents in cerebellar Purkinje cellsMiwako Yamasaki, Taisuke Miyazaki, Hirotsugu Azechi, et al.Neuroscience Research|January 1, 2008
IQ-ArfGEF/BRAG1 is a guanine nucleotide exchange factor for Arf6 that interacts with PSD-95 at postsynaptic density of excitatory synapsesHiroyuki Sakagami, Masashi Sanda, Masahiro Fukaya, et al.The European Journal of Neuroscience|February 19, 2008
Effects of FAK ablation on cerebellar foliation, Bergmann glia positioning and climbing fiber territory on Purkinje cellsFumihiro Watanabe, Taisuke Miyazaki, Tomonori Takeuchi, et al.Molecular and Cellular Neurosciences|November 22, 2005
Impaired cerebellar functions in mutant mice lacking DNERAkira Tohgo, Mototsugu Eiraku, Taisuke Miyazaki, et al.Elife|October 18, 2021
Excitatory and inhibitory receptors utilize distinct post- and trans-synaptic mechanisms in vivoTaisuke Miyazaki, Megumi Morimoto-Tomita, Coralie Berthoux, et al.Nature Communications|August 5, 2017
Retrograde BDNF to TrkB signaling promotes synapse elimination in the developing cerebellumMyeongjeong Choo, Taisuke Miyazaki, Maya Yamazaki, et al.Iscience|June 23, 2025
The transcription factor ZFP64 promotes activity-dependent synapse elimination during postnatal cerebellar developmentJianling Zhang, Takaki Watanabe, Taisuke Miyazaki, et al.Nature Neuroscience|October 20, 2005
Cbln1 is essential for synaptic integrity and plasticity in the cerebellumHirokazu Hirai, Zhen Pang, Dashi Bao, et al.Pageof 8