Takeshi Sakaba

Affiliations: 
Max-Planck-Institut für biophysikalische Chemie, Göttingen, Göttingen, Niedersachsen, Germany 
Area:
Exocytosis, Synaptic Transmission
Google:
"Takeshi Sakaba"
Mean distance: 13.46 (cluster 11)
 
SNBCP
Cross-listing: Chemistry Tree

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Publications

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Miki T, Midorikawa M, Sakaba T. (2020) Direct imaging of rapid tethering of synaptic vesicles accompanying exocytosis at a fast central synapse. Proceedings of the National Academy of Sciences of the United States of America. 117: 14493-14502
Miyano R, Miki T, Sakaba T. (2019) Ca dependence of synaptic vesicle exocytosis and endocytosis at the hippocampal mossy fiber terminal. The Journal of Physiology
Midorikawa M, Sakaba T. (2017) Kinetics of Releasable Synaptic Vesicles and Their Plastic Changes at Hippocampal Mossy Fiber Synapses. Neuron
Okamoto Y, Lipstein N, Hua Y, et al. (2016) Distinct modes of endocytotic presynaptic membrane and protein uptake at the calyx of Held terminal of rats and mice. Elife. 5
Midorikawa M, Sakaba T. (2015) Imaging Exocytosis of Single Synaptic Vesicles at a Fast CNS Presynaptic Terminal. Neuron. 88: 492-8
Díaz-Rojas F, Sakaba T, Kawaguchi SY. (2015) Ca(2+) current facilitation determines short-term facilitation at inhibitory synapses between cerebellar Purkinje cells. The Journal of Physiology
Kawaguchi SY, Sakaba T. (2015) Control of inhibitory synaptic outputs by low excitability of axon terminals revealed by direct recording. Neuron. 85: 1273-88
Mortensen LS, Schmidt H, Farsi Z, et al. (2015) KV 10.1 opposes activity-dependent increase in Ca2+ influx into the presynaptic terminal of the parallel fibre-Purkinje cell synapse. The Journal of Physiology. 593: 181-96
Mortensen LS, Schmidt H, Farsi Z, et al. (2014) KV10.1 opposes activity-dependent increase in Ca2+ influx into the presynaptic terminal of the parallel fibre - Purkinje cell synapse. The Journal of Physiology
Midorikawa M, Okamoto Y, Sakaba T. (2014) Developmental changes in Ca2+ channel subtypes regulating endocytosis at the calyx of Held. The Journal of Physiology. 592: 3495-510
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