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Journal of Neurochemistry|December 13, 2005
Brain-type creatine kinase activates neuron-specific K+-Cl- co-transporter KCC2Koichi Inoue, Junko Yamada, Shinya Ueno, et al.Biochemical and Biophysical Research Communications|January 5, 2005
Characterization of newly cloned variant of rat glycine receptor alpha1 subunitKoichi Inoue, Shinya Ueno, Junko Yamada, et al.FEBS Letters|April 20, 2004
Interaction of neuron-specific K+-Cl- cotransporter, KCC2, with brain-type creatine kinaseKoichi Inoue, Shinya Ueno, Atsuo FukudaToxicology Letters|July 28, 2010
Low-concentration tributyltin perturbs inhibitory synaptogenesis and induces neuronal death in immature but not mature neuronsJunko Yamada, Koichi Inoue, Tomonori Furukawa, et al.Cerebral Cortex (New York, N.Y. : 1991)|September 26, 2006
Molecular basis for the GABAA receptor-mediated tonic inhibition in rat somatosensory cortexJunko Yamada, Tomonori Furukawa, Shinya Ueno, et al.Cerebral Cortex (New York, N.Y. : 1991)|April 22, 2006
Insertion of alpha7 nicotinic receptors at neocortical layer V GABAergic synapses is induced by a benzodiazepine, midazolamSumii Yamamoto, Junko Yamada, Shinya Ueno, et al.The Journal of Biological Chemistry|May 1, 2012
Taurine inhibits K+-Cl- cotransporter KCC2 to regulate embryonic Cl- homeostasis via with-no-lysine (WNK) protein kinase signaling pathwayKoichi Inoue, Tomonori Furukawa, Tatsuro Kumada, et al.Brain Research. Molecular Brain Research|January 22, 2005
Differential functional expression of cation-Cl- cotransporter mRNAs (KCC1, KCC2, and NKCC1) in rat trigeminal nervous systemHiroki Toyoda, Junko Yamada, Shinya Ueno, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 27, 2004
Malfunction of respiratory-related neuronal activity in Na+, K+-ATPase alpha2 subunit-deficient mice is attributable to abnormal Cl- homeostasis in brainstem neuronsKeiko Ikeda, Hiroshi Onimaru, Junko Yamada, et al.Endocrinology|September 18, 2004
Transgenic expression of enhanced green fluorescent protein enables direct visualization for physiological studies of vasopressin neurons and isolated nerve terminals of the ratYoichi Ueta, Hiroaki Fujihara, Ryota Serino, et al.Pageof 62