Defining functional variants associated with Alzheimer's disease in the induced immune response

被引:21
作者
Harwood, Janet C. [1 ]
Leonenko, Ganna [2 ]
Sims, Rebecca [1 ]
Escott-Price, Valentina [1 ,2 ]
Williams, Julie [1 ,2 ]
Holmans, Peter [1 ]
机构
[1] Cardiff Univ, Sch Med, Div Psychol Med & Clin Neurosci, Cardiff CF24 4HQ, Wales
[2] Cardiff Univ, UK Dementia Res Inst, Sch Med, Cardiff CF24 4HQ, Wales
基金
英国医学研究理事会; 英国惠康基金;
关键词
Alzheimer's disease; TWAS; monocytes; mitochondria; lipid metabolism; GENE-EXPRESSION; COMMON VARIANTS; RISK; ONSET; PROTEIN; GWAS; METAANALYSIS; MUTATIONS; GENOTYPE; ROLES;
D O I
10.1093/braincomms/fcab083
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Defining the mechanisms involved in the aetiology of Alzheimer's disease from genome-wide association studies alone is challenging since Alzheimer's disease is polygenic and most genetic variants are non-coding. Non-coding Alzheimer's disease risk variants can influence gene expression by affecting miRNA binding and those located within enhancers and within CTCF sites may influence gene expression through alterations in chromatin states. In addition, their function can be cell-type specific. They can function specifically in microglial enhancers thus affecting gene expression in the brain. Hence, transcriptome-wide association studies have been applied to test the genetic association between disease risk and cell-/tissue-specific gene expression. Many Alzheimer's disease-associated loci are involved in the pathways of the innate immune system. Both microglia, the primary immune cells of the brain, and monocytes which can infiltrate the brain and differentiate into activated macrophages, have roles in neuroinflammation and beta-amyloid clearance through phagocytosis. In monocytes the function of regulatory variants can be context-specific after immune stimulation. To dissect the variants associated with Alzheimer's disease in the context of monocytes, we utilized data from naive monocytes and following immune stimulation in vitro, in combination with genorne-wide association studies of Alzheimer's disease in transcriptome-wide association studies. Of the nine genes with statistically independent transcriptome-wide association signals, seven are located in known Alzheimer's disease risk loci: BIN1, PTK2B, SPI1, MS4A4A, MS4A6E, APOE and PVR. The transcriptome-wide association signal for MS4A6E, PTK2B and PVR and the direction of effect replicated in an independent genome-wide association studies. Our analysis identified two novel candidate genes for Alzheimer's disease risk, LACTB2 and PLIN2/ADRP. LACTB2 replicated in a transcriptome-wide association study using independent expression weights. LACTB2 and PLIN2/ADRP are involved in mitochondrial function and lipid metabolism, respectively. Comparison of transcriptome-wide association study results from monocytes, whole blood and brain showed that the signal for PTK2B is specific to blood and MS4A6E is specific to LPS stimulated monocytes.
引用
收藏
页数:15
相关论文
共 70 条
[1]   Nuclear genetic regulation of the human mitochondrial transcriptome [J].
Ali, Aminah T. ;
Boehme, Lena ;
Carbajosa, Guillermo ;
Seitan, Vlad C. ;
Small, Kerrin S. ;
Hodgkinson, Alan .
ELIFE, 2019, 8
[2]   Mitochondrial targeting and a novel transmembrane arrest of Alzheimer's amyloid precursor protein impairs mitochondrial function in neuronal cells [J].
Anandatheerthavarada, HK ;
Biswas, G ;
Robin, MA ;
Avadhani, NG .
JOURNAL OF CELL BIOLOGY, 2003, 161 (01) :41-54
[3]   Data quality control in genetic case-control association studies [J].
Anderson, Carl A. ;
Pettersson, Fredrik H. ;
Clarke, Geraldine M. ;
Cardon, Lon R. ;
Morris, Andrew P. ;
Zondervan, Krina T. .
NATURE PROTOCOLS, 2010, 5 (09) :1564-1573
[4]   Diverse Roles of Mitochondria in Immune Responses: Novel Insights Into Immuno-Metabolism [J].
Angajala, Anusha ;
Lim, Sangbin ;
Phillips, Joshua B. ;
Kim, Jin-Hwan ;
Yates, Clayton ;
You, Zongbing ;
Tan, Ming .
FRONTIERS IN IMMUNOLOGY, 2018, 9
[5]   Gene-based analysis in HRC imputed genome wide association data identifies three novel genes for Alzheimer's disease [J].
Baker, Emily ;
Sims, Rebecca ;
Leonenko, Ganna ;
Frizzati, Aura ;
Harwood, Janet C. ;
Grozeva, Detelina ;
Morgan, Kevin ;
Passmore, Peter ;
Holmes, Clive ;
Powell, John ;
Brayne, Carol ;
Gill, Michael ;
Mead, Simon ;
Bossu, Paola ;
Spalletta, Gianfranco ;
Cruchaga, Carlos ;
Maier, Wolfgang ;
Heun, Reinhard ;
Jessen, Frank ;
Peters, Oliver ;
Dichgans, Martin ;
FroeLich, Lutz ;
Ramirez, Alfredo ;
Jones, Lesley ;
Hardy, John ;
Ivanov, Dobril ;
Hill, Matthew ;
Holmans, Peter ;
Allen, Nicholas D. ;
Morgan, B. Paul ;
Seshadri, Sudha ;
Schellenberg, Gerard D. ;
Amouyel, Philippe ;
Williams, Julie ;
Escott-Price, Valentina .
PLOS ONE, 2019, 14 (07)
[6]   Exploring the phenotypic consequences of tissue specific gene expression variation inferred from GWAS summary statistics [J].
Barbeira, Alvaro N. ;
Dickinson, Scott P. ;
Bonazzola, Rodrigo ;
Zheng, Jiamao ;
Wheeler, Heather E. ;
Torres, Jason M. ;
Torstenson, Eric S. ;
Shah, Kaanan P. ;
Garcia, Tzintzuni ;
Edwards, Todd L. ;
Stahl, Eli A. ;
Huckins, Laura M. ;
Nicolae, Dan L. ;
Cox, Nancy J. ;
Im, Hae Kyung .
NATURE COMMUNICATIONS, 2018, 9
[7]   Poliovirus Receptor: More than a simple viral receptor [J].
Bowers, Jonathan R. ;
Readler, James M. ;
Sharma, Priyanka ;
Excoffon, Katherine J. D. A. .
VIRUS RESEARCH, 2017, 242 :1-6
[8]   Second-generation PLINK: rising to the challenge of larger and richer datasets [J].
Chang, Christopher C. ;
Chow, Carson C. ;
Tellier, Laurent C. A. M. ;
Vattikuti, Shashaank ;
Purcell, Shaun M. ;
Lee, James J. .
GIGASCIENCE, 2015, 4
[9]   Genetic Drivers of Epigenetic and Transcriptional Variation in Human Immune Cells [J].
Chen, Lu ;
Ge, Bing ;
Casale, Francesco Paolo ;
Vasquez, Louella ;
Kwan, Tony ;
Garrido-Martin, Diego ;
Watt, Stephen ;
Yan, Ying ;
Kundu, Kousik ;
Ecker, Simone ;
Datta, Avik ;
Richardson, David ;
Burden, Frances ;
Mead, Daniel ;
Mann, Alice L. ;
Maria Fernandez, Jose ;
Rowlston, Sophia ;
Wilder, Steven P. ;
Farrow, Samantha ;
Shao, Xiaojian ;
Lambourne, John J. ;
Redensek, Adriana ;
Albers, Cornelis A. ;
Amstislavskiy, Vyacheslav ;
Ashford, Sofie ;
Berentsen, Kim ;
Bomba, Lorenzo ;
Bourque, Guillaume ;
Bujold, David ;
Busche, Stephan ;
Caron, Maxime ;
Chen, Shu-Huang ;
Cheung, Warren ;
Delaneau, Oliver ;
Dermitzakis, Emmanouil T. ;
Elding, Heather ;
Colgiu, Irina ;
Bagger, Frederik O. ;
Flicek, Paul ;
Habibi, Ehsan ;
Iotchkova, Valentina ;
Janssen-Megens, Eva ;
Kim, Bowon ;
Lehrach, Hans ;
Lowy, Ernesto ;
Mandoli, Amit ;
Matarese, Filomena ;
Maurano, Matthew T. ;
Morris, John A. ;
Pancaldi, Vera .
CELL, 2016, 167 (05) :1398-+
[10]   GENE DOSE OF APOLIPOPROTEIN-E TYPE-4 ALLELE AND THE RISK OF ALZHEIMERS-DISEASE IN LATE-ONSET FAMILIES [J].
CORDER, EH ;
SAUNDERS, AM ;
STRITTMATTER, WJ ;
SCHMECHEL, DE ;
GASKELL, PC ;
SMALL, GW ;
ROSES, AD ;
HAINES, JL ;
PERICAKVANCE, MA .
SCIENCE, 1993, 261 (5123) :921-923