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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.
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