2014 - 2017 Molecular mechanisms underlying the diversity of Gi/o-coupled receptor-mediated presynaptic depression
2011 - 2014 Physiological role of neuronal glutamate transporters: control of extrasynaptic glutamate diffusion-mediated modification of synaptic transmission
2009 - 2011 Molecular mechanisms underlying the release dynamics of synaptic vesicles
Satake S, Konishi S. Topographical distance between presynaptic Ca2+ channels and exocytotic Ca2+ sensors contributes to differential facilitatory actions of roscovitine on neurotransmitter release at cerebellar glutamatergic and GABAergic synapses. European Journal of Neuroscience. 2021. 54. 9. 7048-7062
Physiological involvement of presynaptic L-type voltage-dependent calcium channels in GABA release of cerebellar molecular layer interneurons. 2020. 155. 4. 390-402
Satake S, Konishi S. Roscovitine differentially facilitates cerebellar glutamatergic and GABAergic neurotransmission by enhancing Ca(v)2.1 channel-mediated multivesicular release. European Journal of Neuroscience. 2020. 52. 3. 3002-3021
Satake S, Inoue T, Imoto K. Synaptic multivesicular release in the cerebellar cortex: its mechanism and role in neural encoding and processing. Cerebellum. 2016. 15. 2. 201-207
Konishi S, Satake S. Physiological interactions between neurons and glia: roles of transporters in the control of intersynaptic crosstalk. Glial Cells: Embryonic Development, Types/Functions and Role in Disease (Eds Kaur C, Ling EA). 2013. 177-191