Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner
Microglia cells in the brain regulate immune responses, but in ageing can negatively affect brain function. Here the authors show that the chronic presence of type I interferon in aged mouse brain impedes cognitive ability by altering microglia transcriptome and limiting Mef2C, a microglia ‘off’ sig...
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Nature Portfolio
2017
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oai:doaj.org-article:e2dc3b78b5264d47bfe7a706887e8f6c2021-12-02T14:40:46ZMef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner10.1038/s41467-017-00769-02041-1723https://doaj.org/article/e2dc3b78b5264d47bfe7a706887e8f6c2017-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00769-0https://doaj.org/toc/2041-1723Microglia cells in the brain regulate immune responses, but in ageing can negatively affect brain function. Here the authors show that the chronic presence of type I interferon in aged mouse brain impedes cognitive ability by altering microglia transcriptome and limiting Mef2C, a microglia ‘off’ signal.Aleksandra DeczkowskaOrit Matcovitch-NatanAfroditi Tsitsou-KampeliSefi Ben-HamoRaz Dvir-SzternfeldAmit SpinradOded SingerEyal DavidDeborah R. WinterLucas K. SmithAlexander KertserKuti BaruchNeta RosenzweigAnna TeremMarco PrinzSaul VilledaAmi CitriIdo AmitMichal SchwartzNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017) |
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Science Q Aleksandra Deczkowska Orit Matcovitch-Natan Afroditi Tsitsou-Kampeli Sefi Ben-Hamo Raz Dvir-Szternfeld Amit Spinrad Oded Singer Eyal David Deborah R. Winter Lucas K. Smith Alexander Kertser Kuti Baruch Neta Rosenzweig Anna Terem Marco Prinz Saul Villeda Ami Citri Ido Amit Michal Schwartz Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
description |
Microglia cells in the brain regulate immune responses, but in ageing can negatively affect brain function. Here the authors show that the chronic presence of type I interferon in aged mouse brain impedes cognitive ability by altering microglia transcriptome and limiting Mef2C, a microglia ‘off’ signal. |
format |
article |
author |
Aleksandra Deczkowska Orit Matcovitch-Natan Afroditi Tsitsou-Kampeli Sefi Ben-Hamo Raz Dvir-Szternfeld Amit Spinrad Oded Singer Eyal David Deborah R. Winter Lucas K. Smith Alexander Kertser Kuti Baruch Neta Rosenzweig Anna Terem Marco Prinz Saul Villeda Ami Citri Ido Amit Michal Schwartz |
author_facet |
Aleksandra Deczkowska Orit Matcovitch-Natan Afroditi Tsitsou-Kampeli Sefi Ben-Hamo Raz Dvir-Szternfeld Amit Spinrad Oded Singer Eyal David Deborah R. Winter Lucas K. Smith Alexander Kertser Kuti Baruch Neta Rosenzweig Anna Terem Marco Prinz Saul Villeda Ami Citri Ido Amit Michal Schwartz |
author_sort |
Aleksandra Deczkowska |
title |
Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
title_short |
Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
title_full |
Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
title_fullStr |
Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
title_full_unstemmed |
Mef2C restrains microglial inflammatory response and is lost in brain ageing in an IFN-I-dependent manner |
title_sort |
mef2c restrains microglial inflammatory response and is lost in brain ageing in an ifn-i-dependent manner |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/e2dc3b78b5264d47bfe7a706887e8f6c |
work_keys_str_mv |
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