학술논문

Genomewide meta‐analysis identifies loci associated with IGF‐I and IGFBP‐3 levels with impact on age‐related traits
Document Type
article
Author
Teumer, AlexanderQi, QibinNethander, MariaAschard, HuguesBandinelli, StefaniaBeekman, MarianBerndt, Sonja IBidlingmaier, MartinBroer, LindaGroup, CHARGE Longevity WorkingCappola, AnneCeda, Gian PaoloChanock, StephenChen, Ming‐HueiChen, Tai CChen, Yii‐Der IdaChung, JonathanDel Greco Miglianico, FabiolaEriksson, JoelFerrucci, LuigiFriedrich, NeleGnewuch, CarstenGoodarzi, Mark OGrarup, NielsGuo, TingweiHammer, ElkeHayes, Richard BHicks, Andrew AHofman, AlbertHouwing‐Duistermaat, Jeanine JHu, FrankHunter, David JHusemoen, Lise LIsaacs, AaronJacobs, Kevin BJanssen, Joop AMJLJansson, John‐OlovJehmlich, NicoJohnson, SimonJuul, AndersKarlsson, MagnusKilpelainen, Tuomas OKovacs, PeterKraft, PeterLi, ChaoLinneberg, AllanLiu, YongmeiLoos, Ruth JFConsortium, Body Composition GeneticsLorentzon, MattiasLu, YingchangMaggio, MarcelloMagi, ReedikMeigs, JamesMellström, DanNauck, MatthiasNewman, Anne BPollak, Michael NPramstaller, Peter PProkopenko, IngaPsaty, Bruce MReincke, MartinRimm, Eric BRotter, Jerome IPierre, Aude SaintSchurmann, ClaudiaSeshadri, SudhaSjögren, KlaraSlagboom, P ElineStrickler, Howard DStumvoll, MichaelSuh, YousinSun, QiZhang, CuilinSvensson, JohanTanaka, ToshikoTare, ArchanaTönjes, AnkeUh, Hae‐Wonvan Duijn, Cornelia Mvan Heemst, DianaVandenput, LiesbethVasan, Ramachandran SVölker, UweWillems, Sara MOhlsson, ClaesWallaschofski, HenriKaplan, Robert C
Source
Aging Cell. 15(5)
Subject
Biological Sciences
Biomedical and Clinical Sciences
Genetics
Clinical Research
Aging
2.1 Biological and endogenous factors
Aetiology
Metabolic and endocrine
Cardiovascular
Adult
Female
Gene Expression Regulation
Genome-Wide Association Study
Humans
Insulin-Like Growth Factor Binding Protein 3
Insulin-Like Growth Factor I
Male
Metabolome
Quantitative Trait Loci
Quantitative Trait
Heritable
Regulatory Sequences
Nucleic Acid
aging
genomewide association study
growth hormone axis
IGF-I
IGFBP-3
longevity
CHARGE Longevity Working Group
Body Composition Genetics Consortium
Medical and Health Sciences
Developmental Biology
Biological sciences
Biomedical and clinical sciences
Language
Abstract
The growth hormone/insulin-like growth factor (IGF) axis can be manipulated in animal models to promote longevity, and IGF-related proteins including IGF-I and IGF-binding protein-3 (IGFBP-3) have also been implicated in risk of human diseases including cardiovascular diseases, diabetes, and cancer. Through genomewide association study of up to 30 884 adults of European ancestry from 21 studies, we confirmed and extended the list of previously identified loci associated with circulating IGF-I and IGFBP-3 concentrations (IGF1, IGFBP3, GCKR, TNS3, GHSR, FOXO3, ASXL2, NUBP2/IGFALS, SORCS2, and CELSR2). Significant sex interactions, which were characterized by different genotype-phenotype associations between men and women, were found only for associations of IGFBP-3 concentrations with SNPs at the loci IGFBP3 and SORCS2. Analyses of SNPs, gene expression, and protein levels suggested that interplay between IGFBP3 and genes within the NUBP2 locus (IGFALS and HAGH) may affect circulating IGF-I and IGFBP-3 concentrations. The IGF-I-decreasing allele of SNP rs934073, which is an eQTL of ASXL2, was associated with lower adiposity and higher likelihood of survival beyond 90 years. The known longevity-associated variant rs2153960 (FOXO3) was observed to be a genomewide significant SNP for IGF-I concentrations. Bioinformatics analysis suggested enrichment of putative regulatory elements among these IGF-I- and IGFBP-3-associated loci, particularly of rs646776 at CELSR2. In conclusion, this study identified several loci associated with circulating IGF-I and IGFBP-3 concentrations and provides clues to the potential role of the IGF axis in mediating effects of known (FOXO3) and novel (ASXL2) longevity-associated loci.