Takashi Hayashi

University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan 
"Takashi Hayashi"
Mean distance: 14.3 (cluster 11)
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Niu J, Holland SM, Ketschek A, et al. (2022) Palmitoylation couples the kinases DLK and JNK3 to facilitate prodegenerative axon-to-soma signaling. Science Signaling. 15: eabh2674
Hayashi T. (2021) Evolutionarily Established Palmitoylation-Dependent Regulatory Mechanisms of the Vertebrate Glutamatergic Synapse and Diseases Caused by Their Disruption. Frontiers in Molecular Neuroscience. 14: 796912
Iizumi M, Oota-Ishigaki A, Yamashita M, et al. (2021) Reduced Effect of Anticonvulsants on AMPA Receptor Palmitoylation-Deficient Mice. Frontiers in Pharmacology. 12: 711737
Hayashi T. (2020) Post-translational palmitoylation of ionotropic glutamate receptors in excitatory synaptic functions. British Journal of Pharmacology
Itoh M, Okuno H, Yamada D, et al. (2018) Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C-terminal palmitoylation-deficient mice. Neuropsychopharmacology Reports
Itoh M, Yamashita M, Kaneko M, et al. (2018) Deficiency of AMPA receptor-palmitoylation aggravates seizure susceptibility. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Hori K, Nagai T, Shan W, et al. (2014) Cytoskeletal regulation by AUTS2 in neuronal migration and neuritogenesis. Cell Reports. 9: 2166-79
Thomas GM, Hayashi T, Huganir RL, et al. (2013) DHHC8-dependent PICK1 palmitoylation is required for induction of cerebellar long-term synaptic depression. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 15401-7
Thomas GM, Hayashi T. (2013) Smarter neuronal signaling complexes from existing components: how regulatory modifications were acquired during animal evolution: evolution of palmitoylation-dependent regulation of AMPA-type ionotropic glutamate receptors. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. 35: 929-39
Hayashi T, Yoshida T, Ra M, et al. (2013) IL1RAPL1 associated with mental retardation and autism regulates the formation and stabilization of glutamatergic synapses of cortical neurons through RhoA signaling pathway. Plos One. 8: e66254
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