R Schneggenburger, E Neher. Nature 2000
Times Cited: 528
Times Cited: 528
Times Cited
Times Co-cited
Similarity
Calcium sensitivity of glutamate release in a calyx-type terminal.
J H Bollmann, B Sakmann, J G Borst. Science 2000
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Nanodomain coupling between Ca²⁺ channels and sensors of exocytosis at fast mammalian synapses.
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Multiple roles of calcium ions in the regulation of neurotransmitter release.
Erwin Neher, Takeshi Sakaba. Neuron 2008
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Allosteric modulation of the presynaptic Ca2+ sensor for vesicle fusion.
Xuelin Lou, Volker Scheuss, Ralf Schneggenburger. Nature 2005
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Nanoscale distribution of presynaptic Ca(2+) channels and its impact on vesicular release during development.
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The calcium sensor synaptotagmin 7 is required for synaptic facilitation.
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Calcium dependence of the rate of exocytosis in a synaptic terminal.
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A dual-Ca2+-sensor model for neurotransmitter release in a central synapse.
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Loose coupling between Ca2+ channels and release sensors at a plastic hippocampal synapse.
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Molecular machines governing exocytosis of synaptic vesicles.
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Architecture of the synaptotagmin-SNARE machinery for neuronal exocytosis.
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The morphological and molecular nature of synaptic vesicle priming at presynaptic active zones.
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RIM determines Ca²+ channel density and vesicle docking at the presynaptic active zone.
Yunyun Han, Pascal S Kaeser, Thomas C Südhof, Ralf Schneggenburger. Neuron 2011
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Molecular mechanisms for synchronous, asynchronous, and spontaneous neurotransmitter release.
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Release probability of hippocampal glutamatergic terminals scales with the size of the active zone.
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Reduced endogenous Ca2+ buffering speeds active zone Ca2+ signaling.
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Synaptotagmin-1 and synaptotagmin-7 trigger synchronous and asynchronous phases of neurotransmitter release.
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Differential triggering of spontaneous glutamate release by P/Q-, N- and R-type Ca2+ channels.
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10
Munc13 C2B domain is an activity-dependent Ca2+ regulator of synaptic exocytosis.
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10
The primed SNARE-complexin-synaptotagmin complex for neuronal exocytosis.
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10
Nanodomain coupling between Ca2+ channels and Ca2+ sensors promotes fast and efficient transmitter release at a cortical GABAergic synapse.
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10
RIM proteins tether Ca2+ channels to presynaptic active zones via a direct PDZ-domain interaction.
Pascal S Kaeser, Lunbin Deng, Yun Wang, Irina Dulubova, Xinran Liu, Josep Rizo, Thomas C Südhof. Cell 2011
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Doc2b is a high-affinity Ca2+ sensor for spontaneous neurotransmitter release.
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Released fraction and total size of a pool of immediately available transmitter quanta at a calyx synapse.
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Calcium stores in hippocampal synaptic boutons mediate short-term plasticity, store-operated Ca2+ entry, and spontaneous transmitter release.
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Ca2+ channel to synaptic vesicle distance accounts for the readily releasable pool kinetics at a functionally mature auditory synapse.
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Calcium-channel number critically influences synaptic strength and plasticity at the active zone.
Jiansong Sheng, Liming He, Hongwei Zheng, Lei Xue, Fujun Luo, Wonchul Shin, Tao Sun, Thomas Kuner, David T Yue, Ling-Gang Wu. Nat Neurosci 2012
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Reconstitution of the vital functions of Munc18 and Munc13 in neurotransmitter release.
Cong Ma, Lijing Su, Alpay B Seven, Yibin Xu, Josep Rizo. Science 2013
Cong Ma, Lijing Su, Alpay B Seven, Yibin Xu, Josep Rizo. Science 2013
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Superpriming of synaptic vesicles after their recruitment to the readily releasable pool.
Jae Sung Lee, Won-Kyung Ho, Erwin Neher, Suk-Ho Lee. Proc Natl Acad Sci U S A 2013
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A general model of synaptic transmission and short-term plasticity.
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Synaptotagmin: a calcium sensor on the synaptic vesicle surface.
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Molecular mechanisms governing Ca(2+) regulation of evoked and spontaneous release.
Ralf Schneggenburger, Christian Rosenmund. Nat Neurosci 2015
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Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.