Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.

Presenilin 1 (PS1) and Presenilin 2 (PS2) are the enzymatic component of the γ-secretase complex that cleaves amyloid precursor protein (APP) to release amyloid beta (Aβ) peptide. PS deficiency in mice results in neuroinflammation and neurodegeneration in the absence of accumulated Aβ. We hypothesiz...

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Main Authors: Suman Jayadev, Amanda Case, Alison J Eastman, Huy Nguyen, Julia Pollak, Jesse C Wiley, Thomas Möller, Richard S Morrison, Gwenn A Garden
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-12-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3012089?pdf=render
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spelling doaj-9d85599e9a854eae9bfd0229c82744c42020-11-25T00:08:50ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-12-01512e1574310.1371/journal.pone.0015743Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.Suman JayadevAmanda CaseAlison J EastmanHuy NguyenJulia PollakJesse C WileyThomas MöllerRichard S MorrisonGwenn A GardenPresenilin 1 (PS1) and Presenilin 2 (PS2) are the enzymatic component of the γ-secretase complex that cleaves amyloid precursor protein (APP) to release amyloid beta (Aβ) peptide. PS deficiency in mice results in neuroinflammation and neurodegeneration in the absence of accumulated Aβ. We hypothesize that PS influences neuroinflammation through its γ-secretase action in CNS innate immune cells. We exposed primary murine microglia to a pharmacological γ-secretase inhibitor which resulted in exaggerated release of TNFα and IL-6 in response to lipopolysaccharide. To determine if this response was mediated by PS1, PS2 or both we used shRNA to knockdown each PS in a murine microglia cell line. Knockdown of PS1 did not lead to decreased γ-secretase activity while PS2 knockdown caused markedly decreased γ-secretase activity. Augmented proinflammatory cytokine release was observed after knockdown of PS2 but not PS1. Proinflammatory stimuli increased microglial PS2 gene transcription and protein in vitro. This is the first demonstration that PS2 regulates CNS innate immunity. Taken together, our findings suggest that PS2 is the predominant γ-secretase in microglia and modulates release of proinflammatory cytokines. We propose PS2 may participate in a negative feedback loop regulating inflammatory behavior in microglia.http://europepmc.org/articles/PMC3012089?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Suman Jayadev
Amanda Case
Alison J Eastman
Huy Nguyen
Julia Pollak
Jesse C Wiley
Thomas Möller
Richard S Morrison
Gwenn A Garden
spellingShingle Suman Jayadev
Amanda Case
Alison J Eastman
Huy Nguyen
Julia Pollak
Jesse C Wiley
Thomas Möller
Richard S Morrison
Gwenn A Garden
Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
PLoS ONE
author_facet Suman Jayadev
Amanda Case
Alison J Eastman
Huy Nguyen
Julia Pollak
Jesse C Wiley
Thomas Möller
Richard S Morrison
Gwenn A Garden
author_sort Suman Jayadev
title Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
title_short Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
title_full Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
title_fullStr Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
title_full_unstemmed Presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
title_sort presenilin 2 is the predominant γ-secretase in microglia and modulates cytokine release.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-12-01
description Presenilin 1 (PS1) and Presenilin 2 (PS2) are the enzymatic component of the γ-secretase complex that cleaves amyloid precursor protein (APP) to release amyloid beta (Aβ) peptide. PS deficiency in mice results in neuroinflammation and neurodegeneration in the absence of accumulated Aβ. We hypothesize that PS influences neuroinflammation through its γ-secretase action in CNS innate immune cells. We exposed primary murine microglia to a pharmacological γ-secretase inhibitor which resulted in exaggerated release of TNFα and IL-6 in response to lipopolysaccharide. To determine if this response was mediated by PS1, PS2 or both we used shRNA to knockdown each PS in a murine microglia cell line. Knockdown of PS1 did not lead to decreased γ-secretase activity while PS2 knockdown caused markedly decreased γ-secretase activity. Augmented proinflammatory cytokine release was observed after knockdown of PS2 but not PS1. Proinflammatory stimuli increased microglial PS2 gene transcription and protein in vitro. This is the first demonstration that PS2 regulates CNS innate immunity. Taken together, our findings suggest that PS2 is the predominant γ-secretase in microglia and modulates release of proinflammatory cytokines. We propose PS2 may participate in a negative feedback loop regulating inflammatory behavior in microglia.
url http://europepmc.org/articles/PMC3012089?pdf=render
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