Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386009488> ?p ?o ?g. }
- W4386009488 endingPage "4133" @default.
- W4386009488 startingPage "4121" @default.
- W4386009488 abstract "Abstract Glycine receptors (GlyRs), together with GABA A receptors, mediate postsynaptic inhibition in most spinal cord and hindbrain neurons. In several CNS regions, GlyRs are also expressed in presynaptic terminals. Here, we analysed the effects of a phospho‐deficient mutation (S346A) in GlyR α3 subunits on inhibitory synaptic transmission in superficial spinal dorsal horn neurons, where this subunit is abundantly expressed. Unexpectedly, we found that not only were the amplitudes of evoked glycinergic inhibitory postsynaptic currents (IPSCs) significantly larger in GlyRα3(S346A) mice than in mice expressing wild‐type α3GlyRs (GlyRα3(WT) mice), but so were those of GABAergic IPSCs. Decreased frequencies of spontaneously occurring glycinergic and GABAergic miniature IPSCs (mIPSCs) with no accompanying change in mIPSC amplitudes suggested a change in presynaptic transmitter release. Paired‐pulse experiments on glycinergic IPSCs revealed an increased paired‐pulse ratio and a smaller coefficient of variation in GlyRα3(S346A) mice, which together indicate a reduction in transmitter release probability and an increase in the number of releasable vesicles. Paired‐pulse ratios of GABAergic IPSCs recorded in the presence of strychnine were not different between genotypes, while the coefficient of variation was smaller in GlyRα3(S346A) mice, demonstrating that the decrease in release probability was readily reversible by GlyR blockade, while the difference in the size of the pool of releasable vesicles remained. Taken together, our results suggest that presynaptic α3 GlyRs regulate synaptic glycine and GABA release in superficial dorsal horn neurons, and that this effect is potentially regulated by their phosphorylation status. image Key points A serine‐to‐alanine point mutation was introduced into the glycine receptor α3 subunit of mice. This point mutation renders α3 glycine receptors resistant to protein kinase A mediated phosphorylation but has otherwise only small effects on receptor function. Patch‐clamp recordings from neurons in mouse spinal cord slices revealed an unexpected increase in the amplitudes of both glycinergic and GABAergic evoked inhibitory postsynaptic currents (IPSCs). Miniature IPSCs, paired‐pulse ratios and synaptic variation analyses indicate a change in synaptic glycine and GABA release. The results strongly suggest that α3 subunit‐containing glycine receptors are expressed on presynaptic terminals of inhibitory dorsal horn neurons where they regulate transmitter release." @default.
- W4386009488 created "2023-08-21" @default.
- W4386009488 creator A5008024878 @default.
- W4386009488 creator A5009651273 @default.
- W4386009488 creator A5032820237 @default.
- W4386009488 creator A5037149734 @default.
- W4386009488 creator A5039556023 @default.
- W4386009488 creator A5077214207 @default.
- W4386009488 date "2023-08-20" @default.
- W4386009488 modified "2023-09-26" @default.
- W4386009488 title "A phospho‐deficient α3 glycine receptor mutation alters synaptic glycine and GABA release in mouse spinal dorsal horn neurons" @default.
- W4386009488 cites W1553149131 @default.
- W4386009488 cites W159532028 @default.
- W4386009488 cites W1612226764 @default.
- W4386009488 cites W1969196466 @default.
- W4386009488 cites W1973216837 @default.
- W4386009488 cites W1978884918 @default.
- W4386009488 cites W1980983414 @default.
- W4386009488 cites W2001026692 @default.
- W4386009488 cites W2002529395 @default.
- W4386009488 cites W2005349051 @default.
- W4386009488 cites W2007212380 @default.
- W4386009488 cites W2014400727 @default.
- W4386009488 cites W2015386261 @default.
- W4386009488 cites W2021422468 @default.
- W4386009488 cites W2021897528 @default.
- W4386009488 cites W2037820041 @default.
- W4386009488 cites W2042739306 @default.
- W4386009488 cites W2043135259 @default.
- W4386009488 cites W2049879893 @default.
- W4386009488 cites W2051792816 @default.
- W4386009488 cites W2080423414 @default.
- W4386009488 cites W2107011563 @default.
- W4386009488 cites W2109826996 @default.
- W4386009488 cites W2110107835 @default.
- W4386009488 cites W2110779632 @default.
- W4386009488 cites W2111371349 @default.
- W4386009488 cites W2113568840 @default.
- W4386009488 cites W2114457468 @default.
- W4386009488 cites W2131764969 @default.
- W4386009488 cites W2149982926 @default.
- W4386009488 cites W2154304660 @default.
- W4386009488 cites W2161753377 @default.
- W4386009488 cites W2267387313 @default.
- W4386009488 cites W2416532421 @default.
- W4386009488 cites W2800339537 @default.
- W4386009488 cites W2967311726 @default.
- W4386009488 cites W3012128682 @default.
- W4386009488 cites W3028008832 @default.
- W4386009488 cites W3135083533 @default.
- W4386009488 doi "https://doi.org/10.1113/jp284589" @default.
- W4386009488 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37598301" @default.
- W4386009488 hasPublicationYear "2023" @default.
- W4386009488 type Work @default.
- W4386009488 citedByCount "0" @default.
- W4386009488 crossrefType "journal-article" @default.
- W4386009488 hasAuthorship W4386009488A5008024878 @default.
- W4386009488 hasAuthorship W4386009488A5009651273 @default.
- W4386009488 hasAuthorship W4386009488A5032820237 @default.
- W4386009488 hasAuthorship W4386009488A5037149734 @default.
- W4386009488 hasAuthorship W4386009488A5039556023 @default.
- W4386009488 hasAuthorship W4386009488A5077214207 @default.
- W4386009488 hasBestOaLocation W43860094881 @default.
- W4386009488 hasConcept C112592302 @default.
- W4386009488 hasConcept C168258287 @default.
- W4386009488 hasConcept C169760540 @default.
- W4386009488 hasConcept C170493617 @default.
- W4386009488 hasConcept C17077164 @default.
- W4386009488 hasConcept C185592680 @default.
- W4386009488 hasConcept C197341189 @default.
- W4386009488 hasConcept C200170125 @default.
- W4386009488 hasConcept C2777725853 @default.
- W4386009488 hasConcept C2777756961 @default.
- W4386009488 hasConcept C2777969728 @default.
- W4386009488 hasConcept C2779177108 @default.
- W4386009488 hasConcept C2780775167 @default.
- W4386009488 hasConcept C2910581834 @default.
- W4386009488 hasConcept C35599011 @default.
- W4386009488 hasConcept C515207424 @default.
- W4386009488 hasConcept C55493867 @default.
- W4386009488 hasConcept C86803240 @default.
- W4386009488 hasConceptScore W4386009488C112592302 @default.
- W4386009488 hasConceptScore W4386009488C168258287 @default.
- W4386009488 hasConceptScore W4386009488C169760540 @default.
- W4386009488 hasConceptScore W4386009488C170493617 @default.
- W4386009488 hasConceptScore W4386009488C17077164 @default.
- W4386009488 hasConceptScore W4386009488C185592680 @default.
- W4386009488 hasConceptScore W4386009488C197341189 @default.
- W4386009488 hasConceptScore W4386009488C200170125 @default.
- W4386009488 hasConceptScore W4386009488C2777725853 @default.
- W4386009488 hasConceptScore W4386009488C2777756961 @default.
- W4386009488 hasConceptScore W4386009488C2777969728 @default.
- W4386009488 hasConceptScore W4386009488C2779177108 @default.
- W4386009488 hasConceptScore W4386009488C2780775167 @default.
- W4386009488 hasConceptScore W4386009488C2910581834 @default.
- W4386009488 hasConceptScore W4386009488C35599011 @default.
- W4386009488 hasConceptScore W4386009488C515207424 @default.
- W4386009488 hasConceptScore W4386009488C55493867 @default.