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教室紹介 > スタッフ > 堀哲也

Publications (Hori, T.)

2025

Dimitrov D, Lien Y, Hori T, Goda Y, Rosenmund C, Taoufiq Z.
Proteomics-based receptor-ligand matching enhances differentiation maturity of human-stem-cell-derived neurons. Stem Cell Reports 20(9): 102604 (2025).

Yoshida T, Kawano H, Omi J, Hori T, Kobayashi Y, Saitoh N, Aoki J, Takamori S.
Synaptic vesicle fusion promotes phosphatidylinositol 4-phosphate synthesis for efficient synaptic transmission. Cell Reports 44(5): 115634 (2025).

2024

Chang CJ, Taoufiq Z, Yamada H, Takei K, Tomiyama T, Umeda T, Hori T, Takahashi T.
The microtubule-dynamin binding inhibitor peptide PHDP5 rescues spatial learning and memory deficits in Alzheimer’s disease model mice. Brain Research 1838: 148987 (2024).

2022

Hori T, Eguchi K, Wang HY, Miyasaka T, Guillaud L, Taoufiq Z, Mahapatra S, Yamada H, Takei K, Takahashi T.
Microtubule assembly by soluble tau impairs vesicle endocytosis and excitatory neurotransmission via dynamin sequestration in Alzheimer’s disease mice synapse model. eLife 11: e73542 (2022).

Yamashita M, Hori T*.
A novel method to monitor GABA loading into synaptic vesicles by combining patch pipette perfusion and intracellular, caged-GABA photolysis in brain slice preparations. Methods in Molecular Biology 2417: 113-120 (2022). *Corresponding author

2021

Hori T*, Takamori S*.
Physiological perspectives on molecular mechanisms and regulation of vesicular glutamate transport: Lessons from calyx of Held synapses. Frontiers in Cellular Neuroscience 15: 811892 (2021). *Corresponding author

Nojima K, Miyazaki H, Hori T, Vargova L, Oohashi T.
Assessment of possible contributions of hyaluronan and proteoglycan binding link protein 4 to differential perineuronal net formation at the calyx of Held. Frontiers in Cell and Developmental Biology 9: 730550 (2021).

2020

Nakakubo Y, Abe S, Yoshida T, Takami C, Isa M, Wojcik SM, Brose N, Takamori S, Hori T*.
Vesicular glutamate transporter expression ensures high-fidelity synaptic transmission at the calyx of Held synapses. Cell Reports 32(7): 108040 (2020). *Corresponding author

2018

Edamatsu M, Miyano R, Fujikawa A, Fujii F, Hori T, Sakaba T, Oohashi T.
Hapln4/Bral2 is a selective regulator for formation and transmission of GABAergic synapses between Purkinje and deep cerebellar nuclei neurons. Journal of Neurochemistry 147(6): 748-763 (2018).

Yamashita M, Kawaguchi SY, Hori T, Takahashi T.
Vesicular GABA uptake can be rate limiting for recovery of IPSCs from synaptic depression. Cell Reports 22(12): 3134-3141 (2018).

2017

Takami C, Eguchi K, Hori T, Takahashi T.
Impact of vesicular glutamate leakage on synaptic transmission at the calyx of Held. The Journal of Physiology 595(4): 1263-1271 (2017).

2012

Hori T*, Takahashi T.
Kinetics of synaptic vesicle refilling with neurotransmitter glutamate. Neuron 76(3): 511-517 (2012). *Corresponding author

2009

Hori T, Takahashi T.
Mechanisms underlying short-term modulation of transmitter release by presynaptic depolarization. The Journal of Physiology 587(12): 2987-3000 (2009).

2007

Suzuki D, Hori T, Saitoh N, Takahashi T.
4-Chloro-m-cresol, an activator of ryanodine receptors, inhibits voltage-gated K+ channels at the rat calyx of Held. European Journal of Neuroscience 26(6): 1530-1536 (2007).

2006

Mizutani H, Hori T, Takahashi T.
5-HT1B receptor-mediated presynaptic inhibition at the calyx of Held of immature rats. European Journal of Neuroscience 24(7): 1946-1954 (2006).

2001

Saitoh N, Hori T, Takahashi T.
Activation of the epsilon isoform of protein kinase C in the mammalian nerve terminal. Proceedings of the National Academy of Sciences of the United States of America 98(24): 14017-14021 (2001).

2000

Yamauchi Y, Hori T, Takahashi T.
Presynaptic inhibition by muscimol through GABAB receptors. European Journal of Neuroscience 12(9): 3433-3436 (2000).

Takahashi T, Hori T, Kajikawa Y, Tsujimoto T.
The role of GTP-binding protein activity in fast central synaptic transmission. Science 289(5478): 460-463 (2000).

1999

Hori T, Takai Y, Takahashi T.
Presynaptic mechanism for phorbol ester-induced synaptic potentiation. Journal of Neuroscience 19(17): 7262-7267 (1999).


 

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