Human microRNA (miR-20b-5p) modulates Alzheimer’s disease pathways and neuronal function, and a specific polymorphism close to the MIR20B gene influences Alzheimer’s biomarkers

被引:0
|
作者
Ruizhi Wang
Nipun Chopra
Kwangsik Nho
Bryan Maloney
Alexander G. Obukhov
Peter T. Nelson
Scott E. Counts
Debomoy K. Lahiri
机构
[1] Indiana University School of Medicine,Laboratory of Molecular Neurogenetics, Department of Psychiatry, Indiana Alzheimer’s Disease Research Center
[2] Indiana University School of Medicine,Radiology
[3] Indiana University School of Medicine,Anatomy, Cell Biology & Physiology
[4] Sanders-Brown Center on Aging,Departments of Translational Neuroscience & Family Medicine
[5] University of Kentucky,Department of Medical & Molecular Genetics
[6] Kentucky Alzheimer’s Disease Research Center,undefined
[7] Michigan State University,undefined
[8] Grand Rapids,undefined
[9] and Michigan Alzheimer’s Disease Research Center,undefined
[10] Indiana University School of Medicine,undefined
[11] DePauw University,undefined
来源
Molecular Psychiatry | 2022年 / 27卷
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摘要
Alzheimer’s disease (AD) is a progressive neurodegenerative disorder with loss of cognitive, executive, and other mental functions, and is the most common form of age-related dementia. Amyloid-β peptide (Aβ) contributes to the etiology and progression of the disease. Aβ is derived from the amyloid-β precursor protein (APP). Multiple microRNA (miRNA) species are also implicated in AD. We report that human hsa-miR20b-5p (miR-20b), produced from the MIR20B gene on Chromosome X, may play complex roles in AD pathogenesis, including Aβ regulation. Specifically, miR-20b-5p miRNA levels were altered in association with disease progression in three regions of the human brain: temporal neocortex, cerebellum, and posterior cingulate cortex. In cultured human neuronal cells, miR-20b-5p treatment interfered with calcium homeostasis, neurite outgrowth, and branchpoints. A single-nucleotide polymorphism (SNP) upstream of the MIR20B gene (rs13897515) associated with differences in levels of cerebrospinal fluid (CSF) Aβ1-42 and thickness of the entorhinal cortex. We located a miR-20b-5p binding site in the APP mRNA 3′-untranslated region (UTR), and treatment with miR-20b-5p reduced APP mRNA and protein levels. Network analysis of protein-protein interactions and gene coexpression revealed other important potential miR-20b-5p targets among AD-related proteins/genes. MiR-20b-5p, a miRNA that downregulated APP, was paradoxically associated with an increased risk for AD. However, miR-20b-5p also reduced, and the blockade of APP by siRNA likewise reduced calcium influx. As APP plays vital roles in neuronal health and does not exist solely to be the source of “pathogenic” Aβ, the molecular etiology of AD is likely to not just be a disease of “excess” but a disruption of delicate homeostasis.
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页码:1256 / 1273
页数:17
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