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Fluorescent false neurotransmitters visualize dopamine release from individual presynaptic terminals.


ABSTRACT: The nervous system transmits signals between neurons via neurotransmitter release during synaptic vesicle fusion. In order to observe neurotransmitter uptake and release from individual presynaptic terminals directly, we designed fluorescent false neurotransmitters as substrates for the synaptic vesicle monoamine transporter. Using these probes to image dopamine release in the striatum, we made several observations pertinent to synaptic plasticity. We found that the fraction of synaptic vesicles releasing neurotransmitter per stimulus was dependent on the stimulus frequency. A kinetically distinct "reserve" synaptic vesicle population was not observed under these experimental conditions. A frequency-dependent heterogeneity of presynaptic terminals was revealed that was dependent in part on D2 dopamine receptors, indicating a mechanism for frequency-dependent coding of presynaptic selection.

SUBMITTER: Gubernator NG 

PROVIDER: S-EPMC6696931 | biostudies-literature | 2009 Jun

REPOSITORIES: biostudies-literature

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Fluorescent false neurotransmitters visualize dopamine release from individual presynaptic terminals.

Gubernator Niko G NG   Zhang Hui H   Staal Roland G W RG   Mosharov Eugene V EV   Pereira Daniela B DB   Yue Minerva M   Balsanek Vojtech V   Vadola Paul A PA   Mukherjee Bipasha B   Edwards Robert H RH   Sulzer David D   Sames Dalibor D  

Science (New York, N.Y.) 20090507 5933


The nervous system transmits signals between neurons via neurotransmitter release during synaptic vesicle fusion. In order to observe neurotransmitter uptake and release from individual presynaptic terminals directly, we designed fluorescent false neurotransmitters as substrates for the synaptic vesicle monoamine transporter. Using these probes to image dopamine release in the striatum, we made several observations pertinent to synaptic plasticity. We found that the fraction of synaptic vesicles  ...[more]

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