Kensuke Futai

University of Massachusetts Medical School, Worcester, MA, United States 
"Kensuke Futai"
Mean distance: 13.74 (cluster 11)
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Kamalova A, Futai K, Delpire E, et al. (2021) AMPA receptor auxiliary subunit GSG1L suppresses short-term facilitation in corticothalamic synapses and determines seizure susceptibility. Cell Reports. 34: 108732
Kamalova A, Futai K, Delpire E, et al. (2020) AMPA Receptor Auxiliary Subunit GSG1L Suppresses Short-Term Facilitation in Corticothalamic Synapses and Determines Seizure Susceptibility. Cell Reports. 32: 107921
Biswas MH, Almeida S, Lopez-Gonzalez R, et al. (2016) MMP-9 and MMP-2 Contribute to Neuronal Cell Death in iPSC Models of Frontotemporal Dementia with MAPT Mutations. Stem Cell Reports
Esteves da Silva M, Adrian M, Schätzle P, et al. (2015) Positioning of AMPA Receptor-Containing Endosomes Regulates Synapse Architecture. Cell Reports. 13: 933-943
Shen EY, Jiang Y, Mao W, et al. (2015) Cognition and mood-related behaviors in L3mbtl1 null mutant mice. Plos One. 10: e0121252
Mao W, Watanabe T, Cho S, et al. (2015) Shank1 regulates excitatory synaptic transmission in mouse hippocampal parvalbumin-expressing inhibitory interneurons. The European Journal of Neuroscience. 41: 1025-35
Bharadwaj R, Peter CJ, Jiang Y, et al. (2014) Conserved higher-order chromatin regulates NMDA receptor gene expression and cognition. Neuron. 84: 997-1008
Bharadwaj R, Jiang Y, Mao W, et al. (2013) Conserved chromosome 2q31 conformations are associated with transcriptional regulation of GAD1 GABA synthesis enzyme and altered in prefrontal cortex of subjects with schizophrenia. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 11839-51
Futai K, Doty CD, Baek B, et al. (2013) Specific trans-synaptic interaction with inhibitory interneuronal neurexin underlies differential ability of neuroligins to induce functional inhibitory synapses. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 3612-23
Almeida S, Zhang Z, Coppola G, et al. (2012) Induced pluripotent stem cell models of progranulin-deficient frontotemporal dementia uncover specific reversible neuronal defects. Cell Reports. 2: 789-98
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