Inhibition of the Aplysia sensory neuron calcium current with dopamine and serotonin.
نویسندگان
چکیده
The inhibition of Aplysia pleural mechanosensory neuron synapses by dopamine and serotonin through activation of endogenous dopaminergic and expressed 5-HT1Apl(a)/b receptors, respectively, involves a reduction in action potential-associated calcium influx. We show that the inhibition of synaptic efficacy is downstream of the readily releasable pool, suggesting that inhibition is at the level of calcium secretion coupling, likely a result of the changes in the calcium current. Indeed, the inhibitory responses directly reduce a CaV2-like calcium current in isolated sensory neurons. The inhibition of the calcium current is voltage independent as it is not affected by a strong depolarizing prepulse, consistent with other invertebrate CaV2 calcium currents. Similar to voltage-independent inhibition of vertebrate nociceptors, inhibition was blocked with Src tyrosine kinase inhibitors. The data suggest a conserved mechanism by which G protein-coupled receptor activation can inhibit the CaV2 calcium current in nociceptive neurons.
منابع مشابه
Inhibitory responses in Aplysia pleural sensory neurons act to block
24 Expression of the 5HT1Apl(a) receptor in Aplysia pleural sensory neurons, 25 inhibited 5HT-mediated translocation of the novel PKC Apl II in sensory neurons and 26 prevented PKC-dependent synaptic facilitation at sensory to motor neuron synapses 27 (Nagakura et al. 2010). We now demonstrate that the ability of inhibitory receptors to 28 block PKCactivation is a general feature of inhibitory ...
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عنوان ژورنال:
- Journal of neurophysiology
دوره 110 9 شماره
صفحات -
تاریخ انتشار 2013