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Insights into TREM2 biology by network analysis of human brain gene expression data

Rare variants in TREM2 cause susceptibility to late-onset Alzheimer's disease. Here we use microarray-based expression data generated from 101 neuropathologically normal individuals and covering 10 brain regions, including the hippocampus, to understand TREM2 biology in human brain. Using netwo...

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Autores principales: Forabosco, Paola, Ramasamy, Adaikalavan, Trabzuni, Daniah, Walker, Robert, Smith, Colin, Bras, Jose, Levine, Adam P., Hardy, John, Pocock, Jennifer M., Guerreiro, Rita, Weale, Michael E., Ryten, Mina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3988951/
https://www.ncbi.nlm.nih.gov/pubmed/23855984
http://dx.doi.org/10.1016/j.neurobiolaging.2013.05.001
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author Forabosco, Paola
Ramasamy, Adaikalavan
Trabzuni, Daniah
Walker, Robert
Smith, Colin
Bras, Jose
Levine, Adam P.
Hardy, John
Pocock, Jennifer M.
Guerreiro, Rita
Weale, Michael E.
Ryten, Mina
author_facet Forabosco, Paola
Ramasamy, Adaikalavan
Trabzuni, Daniah
Walker, Robert
Smith, Colin
Bras, Jose
Levine, Adam P.
Hardy, John
Pocock, Jennifer M.
Guerreiro, Rita
Weale, Michael E.
Ryten, Mina
author_sort Forabosco, Paola
collection PubMed
description Rare variants in TREM2 cause susceptibility to late-onset Alzheimer's disease. Here we use microarray-based expression data generated from 101 neuropathologically normal individuals and covering 10 brain regions, including the hippocampus, to understand TREM2 biology in human brain. Using network analysis, we detect a highly preserved TREM2-containing module in human brain, show that it relates to microglia, and demonstrate that TREM2 is a hub gene in 5 brain regions, including the hippocampus, suggesting that it can drive module function. Using enrichment analysis we show significant overrepresentation of genes implicated in the adaptive and innate immune system. Inspection of genes with the highest connectivity to TREM2 suggests that it plays a key role in mediating changes in the microglial cytoskeleton necessary not only for phagocytosis, but also migration. Most importantly, we show that the TREM2-containing module is significantly enriched for genes genetically implicated in Alzheimer's disease, multiple sclerosis, and motor neuron disease, implying that these diseases share common pathways centered on microglia and that among the genes identified are possible new disease-relevant genes.
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spelling pubmed-39889512014-04-17 Insights into TREM2 biology by network analysis of human brain gene expression data Forabosco, Paola Ramasamy, Adaikalavan Trabzuni, Daniah Walker, Robert Smith, Colin Bras, Jose Levine, Adam P. Hardy, John Pocock, Jennifer M. Guerreiro, Rita Weale, Michael E. Ryten, Mina Neurobiol Aging Regular Article Rare variants in TREM2 cause susceptibility to late-onset Alzheimer's disease. Here we use microarray-based expression data generated from 101 neuropathologically normal individuals and covering 10 brain regions, including the hippocampus, to understand TREM2 biology in human brain. Using network analysis, we detect a highly preserved TREM2-containing module in human brain, show that it relates to microglia, and demonstrate that TREM2 is a hub gene in 5 brain regions, including the hippocampus, suggesting that it can drive module function. Using enrichment analysis we show significant overrepresentation of genes implicated in the adaptive and innate immune system. Inspection of genes with the highest connectivity to TREM2 suggests that it plays a key role in mediating changes in the microglial cytoskeleton necessary not only for phagocytosis, but also migration. Most importantly, we show that the TREM2-containing module is significantly enriched for genes genetically implicated in Alzheimer's disease, multiple sclerosis, and motor neuron disease, implying that these diseases share common pathways centered on microglia and that among the genes identified are possible new disease-relevant genes. Elsevier 2013-12 /pmc/articles/PMC3988951/ /pubmed/23855984 http://dx.doi.org/10.1016/j.neurobiolaging.2013.05.001 Text en © 2013 Elsevier Inc. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Regular Article
Forabosco, Paola
Ramasamy, Adaikalavan
Trabzuni, Daniah
Walker, Robert
Smith, Colin
Bras, Jose
Levine, Adam P.
Hardy, John
Pocock, Jennifer M.
Guerreiro, Rita
Weale, Michael E.
Ryten, Mina
Insights into TREM2 biology by network analysis of human brain gene expression data
title Insights into TREM2 biology by network analysis of human brain gene expression data
title_full Insights into TREM2 biology by network analysis of human brain gene expression data
title_fullStr Insights into TREM2 biology by network analysis of human brain gene expression data
title_full_unstemmed Insights into TREM2 biology by network analysis of human brain gene expression data
title_short Insights into TREM2 biology by network analysis of human brain gene expression data
title_sort insights into trem2 biology by network analysis of human brain gene expression data
topic Regular Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3988951/
https://www.ncbi.nlm.nih.gov/pubmed/23855984
http://dx.doi.org/10.1016/j.neurobiolaging.2013.05.001
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