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1 esopontine areas, suggesting that UII-R is a presynaptic receptor.
2 globus pallidus-evoked inputs is mediated by presynaptic receptors.
3 dependent inhibition of release machinery by presynaptic receptors.
4 ease of GABA from granule cells by acting on presynaptic receptors.
5 fects of PPs on EPSCs were due to actions at presynaptic receptors.
6 he inhibition was attributable to actions at presynaptic receptors.
7 ostjunctional M1/M3 receptors but also at M2 presynaptic receptors.
8 al and peripheral nervous systems through H3 presynaptic receptors.
9 uires extracellular binding to high affinity presynaptic receptors.
10 oring synapses and modulate transmission via presynaptic receptors.
11                                              Presynaptic receptors also influence transmission, but t
12 -like activity of wild-type LTX, activates a presynaptic receptor and stimulates Ca2+ release from in
13 n can also arise from feedback activation of presynaptic receptors and from postsynaptic processes su
14 mate release through infusions of the mGluR7 presynaptic receptor antagonist MMPIP had no effect on p
15 release during low-frequency activity, these presynaptic receptors are not activated.
16 HT1A (a postsynaptic receptor) and 5-HT1B (a presynaptic receptor) are highly expressed, and synergis
17 , unexpectedly bind to neurexins as the same presynaptic receptor, but that their binding is subject
18 emonstrating the effectiveness of activating presynaptic receptors by iontophoresis.
19 thesis that the cell surface distribution of presynaptic receptors can be regulated in an activity-de
20 ther, the results indicate that a variety of presynaptic receptors can continue to function after the
21 in kinase, matrix metalloproteinases and the presynaptic receptor CD47.
22                                 Thus, unique presynaptic receptor combinations mediate distinct forms
23 ngarotoxin blocked both, consistent with the presynaptic receptors containing alpha7 subunits.
24         Inhibition of transmitter release by presynaptic receptors is widespread in the central nervo
25 NPY Y2 receptor (Y2R), a putative inhibitory presynaptic receptor, is highly expressed on NPY neurons
26 presynaptic inhibitory action of a number of presynaptic receptors on excitatory and inhibitory termi
27                                 In contrast, presynaptic receptors on glutamatergic calyx of Held ter
28 d GABA released from POMC neurons may act at presynaptic receptors on POMC terminals in an autoregula
29                                              Presynaptic receptors play an important role - typically
30 release from nerve terminals is regulated by presynaptic receptors responding to transmitters release
31 ults indicate that the alpha2A-AR is a major presynaptic receptor subtype regulating norepinephrine r
32           Thus, Wit appears to function as a presynaptic receptor that regulates synaptic size at the
33                                              Presynaptic receptors that are coupled to heterotrimeric
34 receptors (mGluRs) in the CNS is to serve as presynaptic receptors that inhibit transmission at gluta
35 tory function and review several examples of presynaptic receptors that meet at least some of those c
36 st that galanin acts via several subtypes of presynaptic receptors to depress synaptic transmission i
37 ptic cells mediated FSI and likely activated presynaptic receptors to inhibit GABA release.
38 Adenosine is a neuromodulator that activates presynaptic receptors to regulate synaptic transmission
39 gnificantly higher affinity for post- versus presynaptic receptors, to dissociate the role of antagon
40 vidence that Dia functions downstream of the presynaptic receptor tyrosine phosphatase Dlar and the R
41 ic Ca2+ channels or act on G protein-coupled presynaptic receptors via another mechanism.

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