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Epigenetic regulation of brain region-specific microglia clearance activity

The rapid elimination of dying neurons and non-functional synapses in the brain is carried out by microglia, the resident myeloid cells of the brain. Here we show that microglia clearance activity in the adult brain is regionally regulated and depends on the rate of neuronal attrition. Cerebellar, b...

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Autores principales: Ayata, Pinar, Badimon, Ana, Strasburger, Hayley J., Duff, Mary Kaye, Montgomery, Sarah E., Loh, Yong-Hwee E., Ebert, Anja, Pimenova, Anna A., Ramirez, Brianna R., Chan, Andrew T., Sullivan, Josefa M., Purushothaman, Immanuel, Scarpa, Joseph R., Goate, Alison M., Busslinger, Meinrad, Shen, Li, Losic, Bojan, Schaefer, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6090564/
https://www.ncbi.nlm.nih.gov/pubmed/30038282
http://dx.doi.org/10.1038/s41593-018-0192-3
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author Ayata, Pinar
Badimon, Ana
Strasburger, Hayley J.
Duff, Mary Kaye
Montgomery, Sarah E.
Loh, Yong-Hwee E.
Ebert, Anja
Pimenova, Anna A.
Ramirez, Brianna R.
Chan, Andrew T.
Sullivan, Josefa M.
Purushothaman, Immanuel
Scarpa, Joseph R.
Goate, Alison M.
Busslinger, Meinrad
Shen, Li
Losic, Bojan
Schaefer, Anne
author_facet Ayata, Pinar
Badimon, Ana
Strasburger, Hayley J.
Duff, Mary Kaye
Montgomery, Sarah E.
Loh, Yong-Hwee E.
Ebert, Anja
Pimenova, Anna A.
Ramirez, Brianna R.
Chan, Andrew T.
Sullivan, Josefa M.
Purushothaman, Immanuel
Scarpa, Joseph R.
Goate, Alison M.
Busslinger, Meinrad
Shen, Li
Losic, Bojan
Schaefer, Anne
author_sort Ayata, Pinar
collection PubMed
description The rapid elimination of dying neurons and non-functional synapses in the brain is carried out by microglia, the resident myeloid cells of the brain. Here we show that microglia clearance activity in the adult brain is regionally regulated and depends on the rate of neuronal attrition. Cerebellar, but not striatal or cortical, microglia exhibited high levels of basal clearance activity, which correlated with an elevated degree of cerebellar neuronal attrition. Exposing forebrain microglia to apoptotic cells activated gene expression programs supporting clearance activity. We provide evidence that the Polycomb repressive complex 2 (PRC2) epigenetically restricts the expression of genes that support clearance activity in striatal and cortical microglia. Loss of PRC2 led to the aberrant activation of a microglia clearance phenotype, which triggers changes in neuronal morphology and behavior. Our data highlight a key role of epigenetic mechanisms in preventing microglia-induced neuronal alterations that are frequently associated with neurodegenerative and psychiatric diseases.
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spelling pubmed-60905642019-01-23 Epigenetic regulation of brain region-specific microglia clearance activity Ayata, Pinar Badimon, Ana Strasburger, Hayley J. Duff, Mary Kaye Montgomery, Sarah E. Loh, Yong-Hwee E. Ebert, Anja Pimenova, Anna A. Ramirez, Brianna R. Chan, Andrew T. Sullivan, Josefa M. Purushothaman, Immanuel Scarpa, Joseph R. Goate, Alison M. Busslinger, Meinrad Shen, Li Losic, Bojan Schaefer, Anne Nat Neurosci Article The rapid elimination of dying neurons and non-functional synapses in the brain is carried out by microglia, the resident myeloid cells of the brain. Here we show that microglia clearance activity in the adult brain is regionally regulated and depends on the rate of neuronal attrition. Cerebellar, but not striatal or cortical, microglia exhibited high levels of basal clearance activity, which correlated with an elevated degree of cerebellar neuronal attrition. Exposing forebrain microglia to apoptotic cells activated gene expression programs supporting clearance activity. We provide evidence that the Polycomb repressive complex 2 (PRC2) epigenetically restricts the expression of genes that support clearance activity in striatal and cortical microglia. Loss of PRC2 led to the aberrant activation of a microglia clearance phenotype, which triggers changes in neuronal morphology and behavior. Our data highlight a key role of epigenetic mechanisms in preventing microglia-induced neuronal alterations that are frequently associated with neurodegenerative and psychiatric diseases. 2018-07-23 2018-08 /pmc/articles/PMC6090564/ /pubmed/30038282 http://dx.doi.org/10.1038/s41593-018-0192-3 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Ayata, Pinar
Badimon, Ana
Strasburger, Hayley J.
Duff, Mary Kaye
Montgomery, Sarah E.
Loh, Yong-Hwee E.
Ebert, Anja
Pimenova, Anna A.
Ramirez, Brianna R.
Chan, Andrew T.
Sullivan, Josefa M.
Purushothaman, Immanuel
Scarpa, Joseph R.
Goate, Alison M.
Busslinger, Meinrad
Shen, Li
Losic, Bojan
Schaefer, Anne
Epigenetic regulation of brain region-specific microglia clearance activity
title Epigenetic regulation of brain region-specific microglia clearance activity
title_full Epigenetic regulation of brain region-specific microglia clearance activity
title_fullStr Epigenetic regulation of brain region-specific microglia clearance activity
title_full_unstemmed Epigenetic regulation of brain region-specific microglia clearance activity
title_short Epigenetic regulation of brain region-specific microglia clearance activity
title_sort epigenetic regulation of brain region-specific microglia clearance activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6090564/
https://www.ncbi.nlm.nih.gov/pubmed/30038282
http://dx.doi.org/10.1038/s41593-018-0192-3
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