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Image Search Results
Journal: The Journal of Neuroscience
Article Title: Specific Trans -Synaptic Interaction with Inhibitory Interneuronal Neurexin Underlies Differential Ability of Neuroligins to Induce Functional Inhibitory Synapses
doi: 10.1523/JNEUROSCI.1811-12.2013
Figure Lengend Snippet: Presynaptic overexpression of Nrxn alone does not change inhibitory synaptic transmission. A–C, Effect of postsynaptic overexpression of NLs (NL1, red; NL2: blue) on unitary inhibitory synaptic transmission in hippocampal CA1 pyramidal neurons. A, Configuration of dual whole-cell recording (top) and averaged sample uIPSC traces by two presynaptically applied depolarization commands (bottom). B, C, Summary of uIPSC amplitude (B) and connectivity (C). The cell pairs, which consist of untransfected interneurons and GFP-expressing postsynaptic pyramidal neurons, were used as the control. p = 0.014 by one-way ANOVA, post hoc Dunnett test *p < 0.05. D–F, Effect of presynaptic overexpression of Nrxns (αNrxn1, light gray; βNrxn1, dark gray) on inhibitory synaptic transmission in hippocampal CA1 pyramidal neurons. D, Configuration of dual whole-cell recording (top), and averaged sample uIPSC traces (bottom). Nrxns were overexpressed in CA1 interneurons by electroporation and postsynaptic response was measured from neighboring untransfected CA1 pyramidal neurons. Summary of uIPSC amplitude (E) and connectivity (F). Controls are neuronal pairs expressing DsRed2 presynaptically. Number in each bar represents the number of synaptically connected cell pairs (B, E) and total number of cell pairs tested (C, F).
Article Snippet: Enhanced green fluorescent protein (EGFP),
Techniques: Over Expression, Transmission Assay, Expressing, Electroporation
Journal: The Journal of Neuroscience
Article Title: Specific Trans -Synaptic Interaction with Inhibitory Interneuronal Neurexin Underlies Differential Ability of Neuroligins to Induce Functional Inhibitory Synapses
doi: 10.1523/JNEUROSCI.1811-12.2013
Figure Lengend Snippet: NL–Nrxn interaction confers the functional inhibitory synapse formation. A–C, Effect of dual overexpression of NL1AB (red) and βNrxn1 or αNrxn1 in postsynaptic and presynaptic neurons on unitary inhibitory synaptic transmission. A, Configuration of dual whole-cell recording (left top), superimposed fluorescent and Nomarski image (left bottom), and averaged sample uIPSC traces (right). NLs were biolistically transfected in CA1 pyramidal neurons (green), and interneurons, which located within 100 μm from NL-transfected neurons, were transfected Nrxns by electroporation (red). B, C, Summary of uIPSC amplitude (B) and connectivity (C). p = 0.002 by one-way ANOVA, post hoc Dunnett test *p < 0.05. D–F, Effect of dual overexpression of NL2A (blue) and βNrxn1 or αNrxn1 in postsynaptic and presynaptic neurons on unitary inhibitory synaptic transmission. D, Averaged sample uIPSC traces. Summary of uIPSC amplitude (E) and connectivity (F). p = 0.00006 by one-way ANOVA, post hoc Dunnett test *p < 0.05. The bar graphs of postsynaptic overexpression of NL1AB and NL2A on uIPSC and connectivity in Figure 5,B and C, are included for a more comprehensive presentation of the finding in the main text. Thirty-one cell pairs expressing GFP and DsRed2 in postsynaptic and presynaptic neurons, and control pairs in Figure 5 were pooled as the control cell pairs (Cntl, black bars).
Article Snippet: Enhanced green fluorescent protein (EGFP),
Techniques: Functional Assay, Over Expression, Transmission Assay, Transfection, Electroporation, Expressing