2013 | 2011 | 2010 | 2008 | 2006 | 2005 | 2002 | 2001 |


Maejima T, Wollenweber P, Teusner LUC, Noebels LJ, Herlitze S, Mark MD. (2013)
Postnatal loss of P/Q-type channels confined to rhombic-lip-derived neurons alters synaptic transmission at the parallel fiber to Purkinje Cell synapse and replicates genomic Cacna1a mutation phenotype of ataxia and seizures in mice.
The Journal of Neuroscience, doi: 10.1523/JNEUROSCI.5442-12.2013

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Mark MD, Maejima T, Kuckelsberg D, Yoo JW, Hyde RA, Shah V, Gutierrez D, Moreno RL, Kruse W, Noebels JL, Herlitze S. (2011)
Delayed Postnatal Loss of P/Q-Type Calcium Channels Recapitulates the Absence Epilepsy, Dyskinesia, and Ataxia Phenotypes of Genomic Cacna1A Mutations.
J Neurosci. 31: 4311-4326

Gutierrez DV, Mark MD, Masseck O, Maejima T, Kuckelsberg D, Hyde RA, Krause M, Kruse W, Herlitze S.(2011)
Optogenetic control of motor coordination by Gi/o protein-coupled vertebrate rhodopsin in cerebellar.
J Biol Chem. 286:25848-25858.

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Liu C, Maejima T, Wyler SC, Casadesus G, Herlitze S, Deneris ES. (2010)
Pet-1 is required across different stages of life to regulate serotonergic function.
Nat Neurosci. 13: 1190-1198

Oh E, Maejima T, Liu C, Deneris E, Herlitze S. (2010)
Substitution of 5-HT1A receptor signaling by a light-activated G protein-coupled receptor.
J Biol Chem. 285: 30825-30836

Inada H, Maejima T, Nakahata Y, Yamaguchi J, Nabekura J, Ishibashi H. (2010)
Endocannabinoids contribute to metabotropic glutamate receptor-mediated inhibition of GABA release onto hippocampal CA3 pyramidal neurons in an isolated neuron/bouton preparation. Neuroscience 165: 1377-1389

Piao H, Minohara M, Kawamura N, Li W, Mizunoe Y, Umehara F, Goto Y, Kusunoki S, Matsushita T, Ikenaka K, Maejima T, Nabekura J, Yamasaki R, Kira J. (2010)
Induction of paranodal myelin detachment and sodium channel loss in vivo by Campylobacter jejuni DNA-binding protein from starved cells (C-Dps) in myelinated nerve fibers.
J Neurol. Sci. 288: 54-62

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Hashimotodani Y, Ohno-Shosaku T, Maejima T, Fukami K, Kano, M. (2008)
Pharmacological evidence for the involvement of diacylglycerol lipase in depolarization-induced endocanabinoid release.
Neuropharmacol. 54: 58-67.

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Kawamura Y, Fukaya M, Maejima T, Yoshida T, Miura E, Watanabe M, Ohno-Shosaku T, Kano M. (2006)
The CB1 cannabinoid receptor is the major cannabinoid receptor at excitatory presynaptic sites in the hippocampus and cerebellum.
J. Neurosci. 26: 2991-3001.

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Ohno-Shosaku T, Hashimotodani Y, Maejima T, Kano M. (2005)
Calcium signaling and synaptic modulation: regulation of endocannabinoid-mediated synaptic modulation by calcium.
Cell Calcium 38: 369-374.

Maejima T, Oka S, Hashimotodani Y, Ohno-Shosaku T, Aiba A, Wu D, Waku K, Sugiura T, Kano M. (2005)
Synaptically driven endocannabinoid release requires Ca2+-assisted metabotropic glutamate receptor subtype 1 to phospholipase Cbeta4 signaling cascade in the cerebellum.
J. Neurosci. 25: 6826-6835.

Hashimotodani Y, Ohno-Shosaku T, Tsubokawa H, Ogata H, Emoto K, Maejima T, Araishi K, Shin HS, Kano M. (2005)
Phospholipase Cbeta serves as a coincidence detector through its Ca2+ dependency for triggering retrograde endocannabinoid signal.
Neuron 45: 257-268.

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Kano M, Ohno-Shosaku T, Maejima T. (2002)
Retrograde signaling at central synapses via endogenous cannabinoids.
Mol. Psychiatry 7, 234-235.

Yoshida T, Hashimoto K, Zimmer A, Maejima T, Araishi K, Kano M. (2002)
The cannabinoid CB1 receptor mediates retrograde signals for depolarization-induced suppression of inhibition in cerebellar Purkinje cells.
J. Neurosci. 22: 1690-1697.

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Maejima T, Hashimoto K, Yoshida T, Aiba A, Kano M. (2001)
Presynaptic inhibition caused by retrograde signal from metabotropic glutamate to cannabinoid receptors.
Neuron 31: 463-475.

Maejima T., Ohno-Shosaku T, Kano M. (2001)
Endogenous cannabinoid as a retrograde messenger from depolarized postsynaptic neurons to presynaptic terminals.
Neurosci. Res. 40: 205-210.

Ohno-Shosaku T, Maejima T, Kano M. (2001)
Endogenous cannabinoids mediate retrograde signals from depolarized postsynaptic neurons to presynaptic terminals.
Neuron 29: 729-738.

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