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  2. Active zone - Wikipedia

    en.wikipedia.org/wiki/Active_zone

    A diagram of the proteins found in the active zone. The active zone is present in all chemical synapses examined so far and is present in all animal species. The active zones examined so far have at least two features in common, they all have protein dense material that project from the membrane and tethers synaptic vesicles close to the membrane and they have long filamentous projections ...

  3. Chemical synapse - Wikipedia

    en.wikipedia.org/wiki/Chemical_synapse

    The synaptic cleft—also called synaptic gap—is a gap between the pre- and postsynaptic cells that is about 20 nm (0.02 μ) wide. [12] The small volume of the cleft allows neurotransmitter concentration to be raised and lowered rapidly.

  4. Excitatory synapse - Wikipedia

    en.wikipedia.org/wiki/Excitatory_synapse

    Chemical synaptic transmission is the transfer of neurotransmitters or neuropeptides from a presynaptic axon to a postsynaptic dendrite. [3] Unlike an electrical synapse, the chemical synapses are separated by a space called the synaptic cleft, typically measured between 15 and 25 nm. Transmission of an excitatory signal involves several steps ...

  5. Neurotransmitter transporter - Wikipedia

    en.wikipedia.org/wiki/Neurotransmitter_transporter

    Their primary function is to carry neurotransmitters across these membranes and to direct their further transport to specific intracellular locations. There are more than twenty types of neurotransmitter transporters. [1] Vesicular transporters move neurotransmitters into synaptic vesicles, regulating the concentrations of substances within ...

  6. Neuromuscular junction - Wikipedia

    en.wikipedia.org/wiki/Neuromuscular_junction

    About once every second in a resting junction randomly one of the synaptic vesicles fuses with the presynaptic neuron's cell membrane in a process mediated by SNARE proteins. Fusion results in the emptying of the vesicle's contents of 7000–10,000 acetylcholine molecules into the synaptic cleft, a process known as exocytosis. [6]

  7. Retina horizontal cell - Wikipedia

    en.wikipedia.org/wiki/Retina_horizontal_cell

    The ecto-ATPase NTPDase1 hydrolyses extracellular ATP to AMP, phosphate groups, and protons. The phosphate groups and protons form a pH buffer with a pKa of 7.2, which keeps the pH in the synaptic cleft relatively acidic. This inhibits the cone Ca 2+ channels and consequently reduces the glutamate release by the cones. [4] [11] [12] [13] [14]

  8. Vesicular monoamine transporter 2 - Wikipedia

    en.wikipedia.org/wiki/Vesicular_monoamine...

    SLC18A2 is essential for enabling the release of neurotransmitters from the axon terminals of monoamine neurons into the synaptic cleft.If SLC18A2 function is inhibited or compromised, monoamine neurotransmitters such as dopamine cannot be released into the synapse via typical release mechanisms (i.e., exocytosis resulting from action potentials).

  9. Postsynaptic density - Wikipedia

    en.wikipedia.org/wiki/Postsynaptic_density

    Ultra-structural analysis of synapses in the brainstem of wild-type (WT) mice at embryonic day 18.5. Synapses of WT neurons in the pre-Bötzinger-complex area exhibit presynaptic vesicles (asterisks), a synaptic cleft and a distinct postsynaptic density (arrowheads). Scale bar, 250 nm. From Heupel et al., 2008