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11 Publications

2024 | Thesis | IST-REx-ID: 15101 | OA
Chen J. Developmental transformation of nanodomain coupling between Ca2+ channels and release sensors at a central GABAergic synapse. 2024. doi:10.15479/at:ista:15101
[Published Version] View | Files available | DOI
 
2024 | Journal Article | IST-REx-ID: 14843
Chen J, Kaufmann W, Chen C, et al. Developmental transformation of Ca2+ channel-vesicle nanotopography at a central GABAergic synapse. Neuron. doi:10.1016/j.neuron.2023.12.002
View | Files available | DOI | PubMed | Europe PMC
 
2022 | Journal Article | IST-REx-ID: 10763 | OA
Herguedas B, Kohegyi BK, Dohrke JN, et al. Mechanisms underlying TARP modulation of the GluA1/2-γ8 AMPA receptor. Nature Communications. 2022;13. doi:10.1038/s41467-022-28404-7
[Published Version] View | Files available | DOI | WoS | PubMed | Europe PMC
 
2022 | Thesis | IST-REx-ID: 11196 | OA
Kim O. Nanoarchitecture of hippocampal mossy fiber-CA3 pyramidal neuron synapses. 2022. doi:10.15479/at:ista:11196
[Published Version] View | Files available | DOI
 
2021 | Journal Article | IST-REx-ID: 9778 | OA
Vandael DH, Okamoto Y, Jonas PM. Transsynaptic modulation of presynaptic short-term plasticity in hippocampal mossy fiber synapses. Nature Communications. 2021;12(1). doi:10.1038/s41467-021-23153-5
[Published Version] View | Files available | DOI | WoS
 
2021 | Journal Article | IST-REx-ID: 9437 | OA
Bhandari P, Vandael DH, Fernández-Fernández D, et al. GABAB receptor auxiliary subunits modulate Cav2.3-mediated release from medial habenula terminals. eLife. 2021;10. doi:10.7554/ELIFE.68274
[Published Version] View | Files available | DOI | WoS
 
2018 | Journal Article | IST-REx-ID: 320 | OA
Hu H, Roth F, Vandael DH, Jonas PM. Complementary tuning of Na+ and K+ channel gating underlies fast and energy-efficient action potentials in GABAergic interneuron axons. Neuron. 2018;98(1):156-165. doi:10.1016/j.neuron.2018.02.024
[Published Version] View | Files available | DOI | WoS
 
2018 | Thesis | IST-REx-ID: 324 | OA
Chen C. Synaptotagmins ensure speed and efficiency of inhibitory neurotransmitter release. 2018. doi:10.15479/AT:ISTA:th_997
[Published Version] View | Files available | DOI
 
2015 | Journal Article | IST-REx-ID: 1535 | OA
Vandael DH, Marcantoni A, Carbone E. Cav1.3 channels as key regulators of neuron-like firings and catecholamine release in chromaffin cells. Current Molecular Pharmacology. 2015;8(2):149-161. doi:10.2174/1874467208666150507105443
[Submitted Version] View | DOI | Download Submitted Version (ext.) | PubMed | Europe PMC
 
2012 | Journal Article | IST-REx-ID: 2969 | OA
Goswami S, Bucurenciu I, Jonas PM. Miniature IPSCs in hippocampal granule cells are triggered by voltage-gated Ca^(2+) channels via microdomain coupling. Journal of Neuroscience. 2012;32(41):14294-14304. doi:10.1523/JNEUROSCI.6104-11.2012
[Submitted Version] View | DOI | Download Submitted Version (ext.) | PubMed | Europe PMC
 
2012 | Journal Article | IST-REx-ID: 3121 | OA
Williams C, Chen W, Lee C, Yaeger D, Vyleta N, Smith S. Coactivation of multiple tightly coupled calcium channels triggers spontaneous release of GABA. Nature Neuroscience. 2012;15(9):1195-1197. doi:10.1038/nn.3162
[Submitted Version] View | DOI | Download Submitted Version (ext.) | PubMed | Europe PMC
 

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