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1 namically from either the presynaptic or the postsynaptic site.
2 ion in SOD1(G93A) developing networks at the postsynaptic site.
3 resynaptic membrane is still attached to the postsynaptic site.
4 ve suggested that they can also modulate the postsynaptic site.
5 y regulated signalling ensembles at specific postsynaptic sites.
6 dGRIP, a Wg-receptor-interacting protein, to postsynaptic sites.
7 cumulates at, and adjacent to, glutamatergic postsynaptic sites.
8 egulate neurotransmitter receptor density at postsynaptic sites.
9 trafficking to favor receptor insertion into postsynaptic sites.
10 -R number is gradually reduced at individual postsynaptic sites.
11 ls begin to atrophy and withdraw from normal postsynaptic sites.
12 transmission to CVNs at both presynaptic and postsynaptic sites.
13 s polarized to dendrites and concentrated at postsynaptic sites.
14 by one presynaptic site diffuses to multiple postsynaptic sites.
15 acetylcholine receptors (nAChRs) to neuronal postsynaptic sites.
16 ta-catenin are also enriched at alpha3-nAChR postsynaptic sites.
17 umin-containing perikarya at cytoplasmic and postsynaptic sites.
18 t of GABAergic transmission at both pre- and postsynaptic sites.
19 eptors are localized to both presynaptic and postsynaptic sites.
20  the trigeminal dorsal horn, particularly at postsynaptic sites.
21 itter release, the receptors can also occupy postsynaptic sites.
22 d actions on both presynaptic neurons and at postsynaptic sites.
23 l neurons, where it is clustered adjacent to postsynaptic sites.
24 taining for GABA(A) receptors (GABA(A)Rs) at postsynaptic sites.
25 rites rarely contained MOR1 at both pre- and postsynaptic sites.
26 is selectively targeted to specific pre- and postsynaptic sites.
27 tes, but localizes specifically to activated postsynaptic sites.
28 ne heads via its ability to recruit Homer to postsynaptic sites.
29 tal NMDA receptors between intracellular and postsynaptic sites.
30  the positioning and clustering of AMPARs at postsynaptic sites.
31 egulate synaptic activity from both pre- and postsynaptic sites.
32 they may regulate processes at both pre- and postsynaptic sites.
33 including the SH3 domain for localization to postsynaptic sites.
34 nnels may be important for recruiting PKA to postsynaptic sites.
35 MPA receptors clustered at these presumptive postsynaptic sites.
36 are concentrated and immobilized at specific postsynaptic sites.
37 ceptors, and potential anchoring proteins at postsynaptic sites.
38 claim a further proportion of the denervated postsynaptic sites.
39 NO relative to NMDA receptors at pre- versus postsynaptic sites.
40 assembly of signal transduction complexes at postsynaptic sites.
41  of PMNs via distinct mechanisms at pre- and postsynaptic sites.
42 otein used to mark GABAergic and glycinergic postsynaptic sites.
43 processes are affected by Rac1 inhibition at postsynaptic sites.
44 ocytic proteins only transiently appeared at postsynaptic sites.
45  auxiliary proteins in order to target it to postsynaptic sites.
46 tering of acetylcholine receptors (AChRs) at postsynaptic sites.
47  calcium and protein messengers initiated at postsynaptic sites.
48 mediated transmission at presynaptic than at postsynaptic sites.
49 ceptors by cytoplasmic proteins at GABAergic postsynaptic sites.
50 ding calcium-permeable AMPA receptors at PVN postsynaptic sites.
51 oteins are known that function at inhibitory postsynaptic sites.
52 hat NL1 regulates the abundance of NMDARs at postsynaptic sites.
53 s, striatal CD73 is prominently localized to postsynaptic sites.
54 calized in high-density clusters at specific postsynaptic sites.
55 density 93 (PSD-93) is a protein enriched at postsynaptic sites.
56 ansporter 2, are colocalized at the presumed postsynaptic sites.
57  with specializations indicative of pre- and postsynaptic sites.
58 tion and sensitivity at both presynaptic and postsynaptic sites.
59 o are concentrated in dendrites, spines, and postsynaptic sites.
60 sing divergence from multisynapse boutons to postsynaptic sites.
61 aptic terminals and for hyperpolarization at postsynaptic sites.
62 are dynamically recruited to and anchored at postsynaptic sites.
63 is sufficient to redistribute proteasomes to postsynaptic sites.
64 glutamate spillover to adjacent receptors at postsynaptic sites.
65  of acetylcholine receptor (AChR) density at postsynaptic sites.
66  can be derived from presynaptic, as well as postsynaptic, sites.
67 a clear and consistent spatial relation with postsynaptic sites, (2) a large number of primary affere
68                       Among other inhibitory postsynaptic sites, A25 pathways innervated the powerful
69 86 phospho-CaMKII) was also redistributed to postsynaptic sites after D4 receptor stimulation.
70 rt a novel mechanism for targeting CaMKII to postsynaptic sites after neuronal activation.
71 RESes may increase translation efficiency at postsynaptic sites after synaptic activation.
72 ceptors, a subset of which are segregated to postsynaptic sites after synaptogenesis.
73             The NGF target is localized at a postsynaptic site and involves a new TrkA-like receptor.
74  how regenerative potentials initiate at the postsynaptic site and propagate decrementally toward the
75 ion of the Pyk2-Src signaling pathway at the postsynaptic site and reveals a physiological function o
76                 They are highly clustered at postsynaptic sites and along dendritic arbors, but wheth
77 lation increases GluR1 surface expression at postsynaptic sites and amplitudes of EPSCs and mEPSCs in
78 -type Ca(2+) channels which are clustered at postsynaptic sites and are important regulators of neuro
79 anus toxin, GDNF, and BDNF are released from postsynaptic sites and are internalized by afferent pres
80 tabilizing microtubules, tau is localized at postsynaptic sites and can regulate synaptic plasticity.
81 dies reveal that Mind bomb-2 is localized to postsynaptic sites and colocalizes with the NMDAR in api
82 protein that recruits glutamate receptors to postsynaptic sites and facilitates signal processing and
83  distinct mechanisms, with group-I acting at postsynaptic sites and group-II and group-III acting at
84 t dendritic mRNA is found in the vicinity of postsynaptic sites and provide additional evidence that
85 f Ca(2+)-dependent plasticity at neighboring postsynaptic sites and provides a postsynaptic mechanism
86 f alpha1 and beta subunits that localizes at postsynaptic sites and replaces embryonically expressed
87 ically, one axon withdrew progressively from postsynaptic sites and the competing axon extended axona
88 small, bulbous compartments that function as postsynaptic sites and undergo intense biochemical and b
89 the submembrane scaffold protein gephyrin to postsynaptic sites, and for postsynaptic function of GAB
90 al or complete withdrawal of axons from some postsynaptic sites, and fragmentation of the postsynapti
91 els are localized on the plasma membrane, at postsynaptic sites, and in association with NMDA recepto
92 NAcylation are found at both presynaptic and postsynaptic sites, and O-GlcNAcylated proteins localize
93 ptors, results in recruitment of gephyrin to postsynaptic sites, and restores the amplitude and frequ
94 ovide evidence that ACh destabilizes nascent postsynaptic sites, and that one major physiological rol
95 riatonigral neurons, acting at both pre- and postsynaptic sites, and that the relative contributions
96 tory actions of GABA at both presynaptic and postsynaptic sites, and this may be one set of mechanism
97  dynamic trafficking of kainate receptors to postsynaptic sites, and thus shed light on common pathop
98 rs, which are often present at both pre- and postsynaptic sites, appear to follow an independent deve
99 of the alpha7 nAChR subtype to both pre- and postsynaptic sites appeared to be required to induce thi
100 sence of dNesp1, mRNAs normally localized at postsynaptic sites are lacking and synaptic maturation i
101 ut the mechanisms that target mRNAs to these postsynaptic sites are not well understood.
102                After partial deafferentation postsynaptic sites are reinnervated by local sprouting o
103 tropic glutamate 5 receptors, present at the postsynaptic site, are coupled to Galphaq/11 proteins an
104 matodendritic domain and its clustering near postsynaptic sites, are mediated by distinct molecular m
105 ased size and reduced apposition of pre- and postsynaptic sites, are observed in FE65/FE65L1-DKO mice
106 nsporters, especially those localized at the postsynaptic sites, are responsible for the observed eff
107 his inhibition was mediated at both pre- and postsynaptic sites as evidenced by a dual decrease in th
108              In neurons, CPEB is detected at postsynaptic sites, as well as in the cell body.
109 yrin-immunoreactive clusters were located at postsynaptic sites at both early and late postnatal ages
110 data suggest that, in similarity to pre- and postsynaptic sites at chemical synapses, one side in ele
111 portions of labeled excitatory contacts onto postsynaptic sites at different subcellular locations.
112 ulating the recruitment of AMPA receptors to postsynaptic sites at excitatory synapses.
113 may coordinate maturation of presynaptic and postsynaptic sites at inhibitory synapses.
114  by which rapsyn is inserted and retained at postsynaptic sites at the neuromuscular junction (NMJ) i
115 oad tracks," that span from muscle nuclei to postsynaptic sites at the neuromuscular junction in Dros
116 robability (Pr) presynaptic sites coupled to postsynaptic sites bearing GluN2B-containing NMDA recept
117 s in the mechanisms of receptor anchoring at postsynaptic sites, both regarding the anchoring of a si
118 ited alpha6(GBS)beta3delta(GBS) receptors to postsynaptic sites but failed to rescue synaptic GABAerg
119 ABA(B) R1 and GABA(B) R2 at various pre- and postsynaptic sites, but also raise the possibility that
120 d thereby prevents AKT kinase activation, to postsynaptic sites by fusing PTEN to Homer1.
121 creased synaptic strength at presynaptic and postsynaptic sites by increasing both quantal release an
122                          PKA is recruited to postsynaptic sites by the A kinase anchor protein AKAP15
123 and reorganization of motor endplates at the postsynaptic sites compared with those from PBS-treated
124                      Synaptic integration at postsynaptic sites determines neuronal outputs in the CN
125 tory neurotransmission, and their density at postsynaptic sites determines synaptic strength.
126 dendrites and a second that sequesters it at postsynaptic sites; different protein interactions motif
127 irement for TrkB at both the presynaptic and postsynaptic sites during development.
128 g the transport of mRNAs from the nucleus to postsynaptic sites during synaptic maturation.
129 ylcholine receptors (AChRs) at corresponding postsynaptic sites during the process of synapse elimina
130    Focal glutamate application at individual postsynaptic sites evoked currents (I(glu)) with little
131 but not learning, suggesting presynaptic and postsynaptic sites for memory formation.
132 ese results suggest the presence of separate postsynaptic sites for the induction of LTD and accommod
133 eptors are targeted to functionally distinct postsynaptic sites from alpha1-receptors, we conclude th
134    Whereas numerous components of excitatory postsynaptic sites have been identified, relatively few
135                 Aside from 'unsilencing' the postsynaptic site, however, the significance of postsyna
136 y interactions from hippocampus and A25 with postsynaptic sites in amygdala remain largely unknown.
137 ulate translation of specific transcripts at postsynaptic sites in an activity-dependent manner.
138 etylcholine receptor (nAChR) localization at postsynaptic sites in avian ciliary ganglion neurons in
139 and also revealed the presence of mGluR7a at postsynaptic sites in both of these regions.
140 show that caspase-3 activity is regulated at postsynaptic sites in brain following stimuli associated
141 ed to focal adhesion kinase and localizes to postsynaptic sites in brain.
142 e epilepsy model, KARs were not recruited to postsynaptic sites in C1ql2/3 double-null mice, leading
143 atergic transmission at both presynaptic and postsynaptic sites in CeA, and glutamatergic synapses in
144 ranslocation of alpha-CaMKII from cytosol to postsynaptic sites in cultured PFC neurons.
145 m rat forebrain and is localized adjacent to postsynaptic sites in dendritic spines in rat hippocampa
146 opic glutamate receptors are concentrated at postsynaptic sites in excitatory synapses.
147 e II), an abundant protein kinase located at postsynaptic sites in glutamatergic synapses.
148    We used a genetic method to label pre and postsynaptic sites in granule neurons and observed a ste
149 lement binding protein 1 (CPEB-1) resides at postsynaptic sites in hippocampal neurons in which it co
150      Whereas PSD-95 and PSD-93 occur only at postsynaptic sites in hippocampal neurons, SAP-102 also
151 opening, NR2A is encountered infrequently at postsynaptic sites in layer 4, but it increases sharply
152 functional nAChR subtypes at presynaptic and postsynaptic sites in LHb, through which nicotine could
153        Anatomical changes at presynaptic and postsynaptic sites in mice undergoing monocular visual d
154 hesis have highlighted the potential role of postsynaptic sites in modulation of cell-cell communicat
155 eurotransmitter receptors are immobilized at postsynaptic sites in neurons are largely unknown.
156 hin is found at the muscle sarcolemma and at postsynaptic sites in neurons.
157 aling mediated long-term depression (LTD) at postsynaptic sites in ovBNST neurons.
158 GluD2 receptor is a fundamental component of postsynaptic sites in Purkinje neurons, and is required
159 sicles are recruited to both presynaptic and postsynaptic sites in response to increased neuronal act
160 ng approaches to identify pathways and their postsynaptic sites in the amygdala in rhesus monkeys, we
161 otein and NSY-1/ASK1 MAPKKK, is localized to postsynaptic sites in the AWC axons for this lateral int
162 rophin glycoprotein complex found at certain postsynaptic sites in the brain.
163 local axons is unable to reinnervate all the postsynaptic sites in the denervated outer dentate molec
164              KARs are found at both pre- and postsynaptic sites in the dorsal horn.
165                ERG K(+) channels localize to postsynaptic sites in the egg-laying muscle, and mutants
166  dietary supplementation enlarged excitatory postsynaptic sites in the maturing cortex.
167 e 5 G-protein beta subunit/R7BP complexes at postsynaptic sites in unison with increased signaling de
168 tamate receptors (GluRs) are concentrated at postsynaptic sites in vivo and in vitro.
169 or B-PIX (a scaffolding protein at GABAergic postsynaptic sites) in a manner dependent on the kinase
170 5-based protein complex is trafficked to the postsynaptic site is unknown but presumably involves spe
171 ory LTP, the increase of gephyrin density at postsynaptic sites is associated with the promoted forma
172  acid receptors (GABAARs) at the appropriate postsynaptic sites is critical for determining the effic
173 g and localization of glutamate receptors at postsynaptic sites is poorly understood.
174  neurotransmitter receptor immobilization at postsynaptic sites is poorly understood.
175 as a presynaptic organizer released from the postsynaptic site, it seems possible that postsynaptic S
176             Although AMPARs are clustered at postsynaptic sites like Cav1.2, beta2AR association with
177 calization of protein synthetic machinery at postsynaptic sites makes it possible for the synthesis o
178 smission is difficult to measure because the postsynaptic sites may be distributed along a tortuous d
179 ivity-dependent incorporation of CaMKII into postsynaptic sites may play a role in maturation and pla
180 n of this translational signaling pathway at postsynaptic sites may provide a mechanism that controls
181 roligins-1, -3, and -4 localize to glutamate postsynaptic sites, neuroligin-2 localizes primarily to
182  rules of organization at presynaptic versus postsynaptic sites (nociceptive afferent terminals vs in
183 component of the EPSC was seen, confirming a postsynaptic site of action of aniracetam.
184               Together, these data suggest a postsynaptic site of action.
185 d by diethyl-lactam, again consistent with a postsynaptic site of action.
186 cadmium and nickel, consistent with a direct postsynaptic site of action.
187             Paired-pulse stimuli indicated a postsynaptic site of action.
188 n the presence of tetrodotoxin, suggesting a postsynaptic site of action.
189 ctive translocation of VAPB protein onto the postsynaptic site of C-boutons that altered the morpholo
190 ing, downregulates the actin dynamics at the postsynaptic site of dendritic spines, and is involved i
191                Because dendritic spines, the postsynaptic site of excitatory synapses, are easily vis
192 C1a also affected the density of spines, the postsynaptic site of most excitatory synapses.
193 application, indicating both presynaptic and postsynaptic sites of action for ethanol.
194   Most NMDAR functions have been ascribed to postsynaptic sites of action, but there is now an apprec
195                         Dendritic spines are postsynaptic sites of excitatory input in the mammalian
196            The function of dendritic spines, postsynaptic sites of excitatory input in the mammalian
197             Dendritic spines are the primary postsynaptic sites of excitatory neurotransmission in th
198 c spines, actin-rich protrusions forming the postsynaptic sites of excitatory synapses, undergo activ
199 vity; their protein products function at the postsynaptic sites of excitatory synapses.
200 vely regulates the size of dendritic spines--postsynaptic sites of excitatory synaptic transmission.
201                              Hence, pre- and postsynaptic sites of expression determine both the sign
202 al evidence that alpha7nAChR is prevalent at postsynaptic sites of glutamatergic synapses in hippocam
203 sions from dendritic shafts that contain the postsynaptic sites of glutamatergic synapses in the brai
204 es AMPA-type glutamate receptors (AMPARs) to postsynaptic sites of glutamatergic synapses.
205 sociated ultrastructural changes at pre- and postsynaptic sites of individual microglomeruli, we empl
206                     Dendritic spines are the postsynaptic sites of most excitatory synapses in the br
207 dynamic, actin-rich structures that form the postsynaptic sites of most excitatory synapses in the br
208         The density of dendritic spines, the postsynaptic sites of most excitatory synapses, increase
209                                           At postsynaptic sites of neurons, a prominent clathrin-coat
210 ion-induced translation in germ cells and at postsynaptic sites of neurons.
211 enzyme DGL-alpha colocalized with mGlu(5) at postsynaptic sites of the dlPAG, whereas CB(1) was confi
212 ity of simultaneous imaging of both pre- and postsynaptic sites of the dopaminergic system in baboons
213 r ligand co-injected to assess both pre- and postsynaptic sites of the dopaminergic system simultaneo
214                     Dendritic spines are the postsynaptic sites of the majority of excitatory synapse
215 abnormal morphology of dendritic spines, the postsynaptic sites of the majority of excitatory synapse
216 subtype, the sst2A receptor, is localized at postsynaptic sites of the principal neurons where it mod
217  GABA(C) receptors and MAP-1B co-localize at postsynaptic sites on bipolar cell axon terminals.
218 e receptors, but not glutamate receptors, at postsynaptic sites on central neurons.
219              Polyribosomal complexes beneath postsynaptic sites on dendrites provide a substrate for
220                                   Excitatory postsynaptic sites on dendritic spines contained a high
221 pulation of iAChRs specifically localized at postsynaptic sites on inhibitory motor neurons.
222  complexes are selectively localized beneath postsynaptic sites on neuronal dendrites; this localizat
223 AMPA vs NMDA receptors) at a single class of postsynaptic sites on pyramidal cell dendritic spines.
224 A receptors that are mobilized to functional postsynaptic sites on the plasma membrane by afferent in
225              We find matching dynamics among postsynaptic sites on the principal neurons receiving th
226 bly or removal) of excitatory and inhibitory postsynaptic sites on the same neurons in mouse visual c
227 e rat entorhinal cortex are mobile at either postsynaptic sites or in presynaptic terminals.
228 nt in both presynaptic axon terminals and at postsynaptic sites, primarily dendrites.
229 of different subunit composition to specific postsynaptic sites, providing a mechanism to increase th
230 resence of R1 has been described at pre- and postsynaptic sites, R2 is mainly associated with postsyn
231                               Failure of the postsynaptic site, rather than hyperexcitation, drives d
232 P-induced nociceptive responses primarily at postsynaptic sites, rather than through inhibition of SP
233 ophies when dysfunctional, has a function at postsynaptic sites restricted to a subset of GABAergic i
234 clusion of GluN2B-containing NMDARs from the postsynaptic site specifically at projections from the a
235 gh they did exhibit a decrease in excitatory postsynaptic sites, suggesting that synapse loss may be
236 v2.1 subunit-containing channels at specific postsynaptic sites suggests that this family of voltage-
237 ve distribution of MORs to specific pre- and postsynaptic sites suggests the receptor may be selectiv
238 ponse to the peptide at both presynaptic and postsynaptic sites, suggests that the peptide probably m
239        Effects were specific to alpha3-nAChR postsynaptic sites; synaptic glycine receptor and perisy
240  Dendritic spines are the primary excitatory postsynaptic sites that act as subcompartments of signal
241 otagmin and active zone markers, adjacent to postsynaptic sites that have aggregates of glutamate IIA
242                     Dendritic spines are the postsynaptic sites that receive most of the excitatory s
243                                           At postsynaptic sites, the PDZ scaffolds are essential for
244 eeds back to activate NMDAR at corresponding postsynaptic sites through increased neurotransmitter re
245  be involved in localizing AMPA receptors at postsynaptic sites through its interaction with the GluR
246  by recruiting intracellular vesicles toward postsynaptic sites through the interaction with synbindi
247 MeHg apparently acts at both presynaptic and postsynaptic sites to alter GABA(A) receptor-mediated in
248 MeHg apparently acts at both presynaptic and postsynaptic sites to alter GABAA receptor-mediated inhi
249 f synaptic activity in ovBNST, which acts at postsynaptic sites to dampen excitability at short and l
250 nsducing proteins of both glutamate and GABA postsynaptic sites to either the microtubule or microfil
251 , nicotine acts at different presynaptic and postsynaptic sites to facilitate glutamatergic neurotran
252 Thus, chapsyn-110 and PSD-95 may interact at postsynaptic sites to form a multimeric scaffold for the
253 y generating H(2)O(2) that must diffuse from postsynaptic sites to inhibit presynaptic DA release via
254                      Thus, Pyk2 functions at postsynaptic sites to modulate F-actin control by RhoA a
255 alpha (CaMKII), sequentially translocates to postsynaptic sites, undergoes autophosphorylation and ge
256 receptor-deficient mice, but not in the PFC (postsynaptic site), using a viral gene-delivery approach
257 their roles in the assembly of glutamatergic postsynaptic sites, we studied the distributions of NMDA
258  which they regulate receptor populations at postsynaptic sites, we utilized electron tomography to e
259  We now show that endogenous tau is found at postsynaptic sites where it interacts with the PSD95-NMD
260 onstrate that SULT4A1 is highly expressed at postsynaptic sites where it sequesters Pin1, preventing
261 ed in the brain, and are present at pre- and postsynaptic sites where they play a prominent role in s
262 n is a key site for recruiting CaMKII to the postsynaptic site, where it may act in concert with calm
263  diffuse in the plasma membrane to reach the postsynaptic site, where they are trapped to contribute
264 /Calmodulin-dependent Kinase II (CaMKII), to postsynaptic sites, where it is rapidly translated.
265 ain-specific protein localized to excitatory postsynaptic sites, where it regulates glutamate recepto
266 eta proteins were localized to glutamatergic postsynaptic sites, where they interacted with the NMDAR
267 I mGluRs and provide various presynaptic and postsynaptic sites whereby mGluR1 and mGluR5 could media
268  of mitochondria relative to presynaptic and postsynaptic sites, whether mitochondria are dynamically
269 nearly equal number of interspersed pre- and postsynaptic sites, with extensive synaptic connectivity
270          DOR immunoreactivity was located at postsynaptic sites within neuronal perikarya (2%), dendr
271   KOR immunoreactivity was found at pre- and postsynaptic sites within the RVM of both sexes.
272 f MEF2C results in a reduction of excitatory postsynaptic sites without affecting learning and memory

 
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