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ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation

BACKGROUND: Apolipoprotein E receptor 2 (ApoEr2) is a postsynaptic protein involved in long-term potentiation (LTP), learning, and memory through unknown mechanisms. We examined the biological effects of ApoEr2 on synapse and dendritic spine formation—processes critical for learning and memory. METH...

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Autores principales: Dumanis, Sonya B., Cha, Hyun-Jung, Song, Jung Min, Trotter, Justin H., Spitzer, Matthew, Lee, Ji-Yun, Weeber, Edwin J., Turner, R. Scott, Pak, Daniel T. S., Rebeck, G. William, Hoe, Hyang-Sook
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039666/
https://www.ncbi.nlm.nih.gov/pubmed/21347244
http://dx.doi.org/10.1371/journal.pone.0017203
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author Dumanis, Sonya B.
Cha, Hyun-Jung
Song, Jung Min
Trotter, Justin H.
Spitzer, Matthew
Lee, Ji-Yun
Weeber, Edwin J.
Turner, R. Scott
Pak, Daniel T. S.
Rebeck, G. William
Hoe, Hyang-Sook
author_facet Dumanis, Sonya B.
Cha, Hyun-Jung
Song, Jung Min
Trotter, Justin H.
Spitzer, Matthew
Lee, Ji-Yun
Weeber, Edwin J.
Turner, R. Scott
Pak, Daniel T. S.
Rebeck, G. William
Hoe, Hyang-Sook
author_sort Dumanis, Sonya B.
collection PubMed
description BACKGROUND: Apolipoprotein E receptor 2 (ApoEr2) is a postsynaptic protein involved in long-term potentiation (LTP), learning, and memory through unknown mechanisms. We examined the biological effects of ApoEr2 on synapse and dendritic spine formation—processes critical for learning and memory. METHODOLOGY/PRINCIPAL FINDINGS: In a heterologous co-culture synapse assay, overexpression of ApoEr2 in COS7 cells significantly increased colocalization with synaptophysin in primary hippocampal neurons, suggesting that ApoEr2 promotes interaction with presynaptic structures. In primary neuronal cultures, overexpression of ApoEr2 increased dendritic spine density. Consistent with our in vitro findings, ApoEr2 knockout mice had decreased dendritic spine density in cortical layers II/III at 1 month of age. We also tested whether the interaction between ApoEr2 and its cytoplasmic adaptor proteins, specifically X11α and PSD-95, affected synapse and dendritic spine formation. X11α decreased cell surface levels of ApoEr2 along with synapse and dendritic spine density. In contrast, PSD-95 increased cell surface levels of ApoEr2 as well as synapse and dendritic spine density. CONCLUSIONS/SIGNIFICANCE: These results suggest that ApoEr2 plays important roles in structure and function of CNS synapses and dendritic spines, and that these roles are modulated by cytoplasmic adaptor proteins X11α and PSD-95.
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spelling pubmed-30396662011-02-23 ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation Dumanis, Sonya B. Cha, Hyun-Jung Song, Jung Min Trotter, Justin H. Spitzer, Matthew Lee, Ji-Yun Weeber, Edwin J. Turner, R. Scott Pak, Daniel T. S. Rebeck, G. William Hoe, Hyang-Sook PLoS One Research Article BACKGROUND: Apolipoprotein E receptor 2 (ApoEr2) is a postsynaptic protein involved in long-term potentiation (LTP), learning, and memory through unknown mechanisms. We examined the biological effects of ApoEr2 on synapse and dendritic spine formation—processes critical for learning and memory. METHODOLOGY/PRINCIPAL FINDINGS: In a heterologous co-culture synapse assay, overexpression of ApoEr2 in COS7 cells significantly increased colocalization with synaptophysin in primary hippocampal neurons, suggesting that ApoEr2 promotes interaction with presynaptic structures. In primary neuronal cultures, overexpression of ApoEr2 increased dendritic spine density. Consistent with our in vitro findings, ApoEr2 knockout mice had decreased dendritic spine density in cortical layers II/III at 1 month of age. We also tested whether the interaction between ApoEr2 and its cytoplasmic adaptor proteins, specifically X11α and PSD-95, affected synapse and dendritic spine formation. X11α decreased cell surface levels of ApoEr2 along with synapse and dendritic spine density. In contrast, PSD-95 increased cell surface levels of ApoEr2 as well as synapse and dendritic spine density. CONCLUSIONS/SIGNIFICANCE: These results suggest that ApoEr2 plays important roles in structure and function of CNS synapses and dendritic spines, and that these roles are modulated by cytoplasmic adaptor proteins X11α and PSD-95. Public Library of Science 2011-02-15 /pmc/articles/PMC3039666/ /pubmed/21347244 http://dx.doi.org/10.1371/journal.pone.0017203 Text en Dumanis et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dumanis, Sonya B.
Cha, Hyun-Jung
Song, Jung Min
Trotter, Justin H.
Spitzer, Matthew
Lee, Ji-Yun
Weeber, Edwin J.
Turner, R. Scott
Pak, Daniel T. S.
Rebeck, G. William
Hoe, Hyang-Sook
ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title_full ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title_fullStr ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title_full_unstemmed ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title_short ApoE Receptor 2 Regulates Synapse and Dendritic Spine Formation
title_sort apoe receptor 2 regulates synapse and dendritic spine formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039666/
https://www.ncbi.nlm.nih.gov/pubmed/21347244
http://dx.doi.org/10.1371/journal.pone.0017203
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