Results 291 to 300 of about 87,423 (320)
Roles in physiology and disease of the inositol phosphatase synaptojanin 1. [PDF]
De Camilli P.
europepmc +1 more source
TDP-43 Regulates Rab4 Levels to Support Synaptic Vesicle Recycling and Neuromuscular Connectivity in <i>Drosophila</i> and Human ALS Models. [PDF]
Gbadamosi M +6 more
europepmc +1 more source
An ADP getaway service, not an ATP tank: Insights into the phosphagen system in neurons
The Journal of Physiology, EarlyView.
Madeline P. Marques +1 more
wiley +1 more source
Existence of P/Q-type Calcium Channels in Chicken Presynaptic Nerve Terminals?
Henry K.-H. Mah
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Amyloid-ß Acts as a regulator of neurotransmitter release disrupting the interaction between synaptophysin and VAMP2 [PDF]
Alifragis, P +5 more
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Biogenesis of Presynaptic Terminal Proteins
Journal of Neurochemistry, 1987Abstract: The delivery of proteins to the presynaptic terminals of guinea pig retinal ganglion cells by two of the major components of axonal transport, and the subsequent persistence and turnover of those proteins were examined in this study.
J A, Garner, H R, Mahler
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Ultrastructural organization of presynaptic terminals
Current Opinion in Neurobiology, 2011In response to calcium influx, synaptic vesicles fuse very rapidly with the plasma membrane to release their neurotransmitter content. An important mechanism for sustained release includes the formation of new vesicles by local endocytosis. How synaptic vesicles are trafficked from the sites of endocytosis to the sites of release and how they are ...
Léa, Siksou +2 more
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Molecular architecture of the presynaptic terminal
Current Opinion in Structural Biology, 2019Neurotransmitter release at the presynaptic terminal is one of the fundamental processes in neuronal communication. It is a complex process comprising signaling pathways that exert a precise spatio-temporal coordination to prepare and bring synaptic vesicles to exocytosis.
Benoît Zuber, Vladan Lučić
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