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Transcriptional corepressor SIN3A regulates hippocampal synaptic plasticity via Homer1/mGluR5 signaling
Morgan Bridi, Hannah Schoch, Cédrick Florian, Shane G. Poplawski, Anamika Banerjee, Joshua D. Hawk, Giulia S. Porcari, Camille Lejards, Chang-Gyu Hahn, Karl-Peter Giese, Robbert Havekes, Nelson Spruston, Ted Abel
Morgan Bridi, Hannah Schoch, Cédrick Florian, Shane G. Poplawski, Anamika Banerjee, Joshua D. Hawk, Giulia S. Porcari, Camille Lejards, Chang-Gyu Hahn, Karl-Peter Giese, Robbert Havekes, Nelson Spruston, Ted Abel
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Research Article Genetics Neuroscience

Transcriptional corepressor SIN3A regulates hippocampal synaptic plasticity via Homer1/mGluR5 signaling

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Abstract

Long-term memory depends on the control of activity-dependent neuronal gene expression, which is regulated by epigenetic modifications. The epigenetic modification of histones is orchestrated by the opposing activities of 2 classes of regulatory complexes: permissive coactivators and silencing corepressors. Much work has focused on coactivator complexes, but little is known about the corepressor complexes that suppress the expression of plasticity-related genes. Here, we define a critical role for the corepressor SIN3A in memory and synaptic plasticity, showing that postnatal neuronal deletion of Sin3a enhances hippocampal long-term potentiation and long-term contextual fear memory. SIN3A regulates the expression of genes encoding proteins in the postsynaptic density. Loss of SIN3A increases expression of the synaptic scaffold Homer1, alters the metabotropic glutamate receptor 1α (mGluR1α) and mGluR5 dependence of long-term potentiation, and increases activation of ERK in the hippocampus after learning. Our studies define a critical role for corepressors in modulating neural plasticity and memory consolidation and reveal that Homer1/mGluR signaling pathways may be central molecular mechanisms for memory enhancement.

Authors

Morgan Bridi, Hannah Schoch, Cédrick Florian, Shane G. Poplawski, Anamika Banerjee, Joshua D. Hawk, Giulia S. Porcari, Camille Lejards, Chang-Gyu Hahn, Karl-Peter Giese, Robbert Havekes, Nelson Spruston, Ted Abel

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Figure 5

Reduction in SIN3A increases Homer1 expression and affects signaling cascades downstream of mGluR.

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Reduction in SIN3A increases Homer1 expression and affects signaling cas...
(A) Expression of genes previously identified as regulatory targets of HDAC2 and SIN3A in hippocampus of WT and Sin3aNH mice 1 hour after fear conditioning. Levels of Homer1 (unpaired 2-tailed t test, n = 7 per group; t[1,12] = –6.448, ***P < 0.001) and Cdk5 (t[1,12] = –2.836, *P < 0.02) are increased relative to controls, and the level of Grin2b is decreased (t[1,12] = 3.038, *P < 0.02). (B) Expression of Homer1 exons encoding both short (Homer1a) and long (containing exon 10) isoforms is elevated in Sin3aNH mice (control, n = 7; Sin3aNH, n = 6; unpaired 2-tailed t test, exon 1 t[1,11] = –2.877, *P < 0.02; Homer1a, t[1,11] = –3.313, **P < 0.01; Ania-3, t[1,11] = –2.146, P < 0.08; exon 10, t[1,11] = –3.251, **P < 0.01). (C) Expression of Cdk5 and Homer1 is not affected at baseline by Sin3a depletion (control, n = 6; Sin3aNH, n = 6; unpaired 2-tailed t tests; Cdk5 t[1,10] = 1.227, P = 0.2481; Homer1a t[1,10] = 0.9146, P = 0.3819; Homer1 exon 1 t[1,10] = 0.2058, P = 0.8411; Homer1 exon 10, t[1,10] = 0.1763, P = 0.8639). (D) PSD protein levels of HOMER1B/C and mGluR5 are increased in Sin3aNH hippocampal PSD fractions compared with controls (control, n = 3; Sin3aNH, n = 4; unpaired 2-tailed t test with Welch’s correction; Homer1b/c, t[1,3] = 6.388, **P < 0.008; mGluR5, t[1,3] = 4.059, *P < 0.016; PSD-95, t[1,3] = 1.756, P = 0.182). (E) Representative images of hippocampal area CA1 showing cells stained for somatic ERK p42/44 in a Sin3aNH mouse and a control littermate 1 hour after contextual fear conditioning. Scale bar: 0.1 mm. Larger images of all hippocampal subregions are in Supplemental Figure 5. (F) Quantification of pERK+ neurons in dorsal hippocampus following contextual fear conditioning shows a significantly higher number of cells positive for ERK p42/44 in CA1 and DG, but not CA3, of Sin3aNH mice compared with control littermates (n = 14 per group; unpaired 2-tailed t test; CA1, *P = 0.0163; CA3, P = 0.5342; Mann-Whitney U test; DG, *P = 0.0162). All data are presented as mean ± SEM.

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