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Published on: December 26, 2016
Microglial genes regulating neuroinflammation in the progression of Alzheimer's disease
Claudio Villegas-Llerena1, Alexandra Phillips2, Pablo Garcia-Reitboeck1
1Department of Neuroinflammation, University College London, Institute of Neurology, 1 Wakefield Street, London WC1 N 1PK, UK; Department of Molecular Neuroscience, University College London, Institute of Neurology, 1 Wakefield Street, London WC1 N 1PK, UK.
Abstract:
Neuroinflammation is a pathological hallmark of Alzheimer's disease (AD), and microglia, the brain's resident phagocyte, are pivotal for the immune response observed in AD. Microglia act as sentinel and protective cells, but may become inappropriately reactive in AD to drive neuropathology. Recent Genome Wide Association Studies (GWAS) have identified more than 20 gene variants associated with an increased risk of late-onset AD (LOAD), the most prevalent form of AD [1]. The findings strongly implicate genes related to the immune response (CR1, CD33, MS4A, CLU, ABCA7, EPHA1 and HLA-DRB5-HLA-DRB1), endocytosis (BIN1, PICALM, CD2AP, EPHA1 and SORL1) and lipid biology (CLU, ABCA7 and SORL1) [2-8], and many encode proteins which are highly expressed in microglia [1]. Furthermore, recent identification of a low frequency mutation in the gene encoding the triggering receptor expressed in myeloid cells 2 protein (TREM2) confers increased risk of AD in LOAD cohorts with an effect size similar to that for APOE, until recently the only identified genetic risk factor associated with LOAD [9,10(••)] (Figure 1). The present review summarises our current understanding of the probable roles of microglial genes in the regulation of neuroinflammatory processes in AD and their relation to other processes affecting the disease's progression.
Insights
Microglia play a key role in Alzheimer's disease (AD) neuroinflammation. Genetic studies reveal that microglial genes involved in immune response, endocytosis, and lipid biology are linked to increased risk for late-onset AD (LOAD).
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Neuroinflammation, driven by microglia, is central to Alzheimer's disease (AD) pathology.
- Genome-Wide Association Studies (GWAS) have identified numerous AD risk genes, many expressed in microglia.
- Mutations in TREM2 (triggering receptor expressed in myeloid cells 2) significantly increase LOAD risk.
Purpose of the Study:
- To review the role of microglial genes in regulating neuroinflammation in AD.
- To explore the connection between microglial genes and AD progression.
Main Methods:
- Review of recent Genome-Wide Association Studies (GWAS) findings.
- Analysis of genetic risk factors for late-onset Alzheimer's disease (LOAD).
- Examination of gene variants associated with immune response, endocytosis, and lipid biology.
Main Results:
- Over 20 gene variants linked to LOAD risk implicate immune, endocytic, and lipid pathways.
- Many identified risk genes encode proteins highly expressed in microglia.
- TREM2 mutations confer a significant risk for LOAD, comparable to APOE.
Conclusions:
- Microglial genes are critical in modulating neuroinflammatory processes in AD.
- Understanding these genes is vital for elucidating AD pathogenesis and progression.
- Targeting microglial functions offers potential therapeutic avenues for AD.
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