학술논문

Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes.
Document Type
article
Author
Strawbridge, Rona JDupuis, JoséeProkopenko, IngaBarker, AdamAhlqvist, EmmaRybin, DenisPetrie, John RTravers, Mary EBouatia-Naji, NabilaDimas, Antigone SNica, AlexandraWheeler, EleanorChen, HanVoight, Benjamin FTaneera, JalalKanoni, StavroulaPeden, John FTurrini, FabiolaGustafsson, StefanZabena, CarinaAlmgren, PeterBarker, David JPBarnes, DanielDennison, Elaine MEriksson, Johan GEriksson, PerEury, ElodieFolkersen, LasseFox, Caroline SFrayling, Timothy MGoel, AnujGu, Harvest FHorikoshi, MomokoIsomaa, BoJackson, Anne UJameson, Karen AKajantie, EeroKerr-Conte, JulieKuulasmaa, TeemuKuusisto, JohannaLoos, Ruth JFLuan, Jian'anMakrilakis, KonstantinosManning, Alisa KMartínez-Larrad, María TeresaNarisu, NarisuNastase Mannila, MariaOhrvik, JohnOsmond, ClivePascoe, LauraPayne, FelicitySayer, Avan ASennblad, BengtSilveira, AngelaStancáková, AlenaStirrups, KathySwift, Amy JSyvänen, Ann-ChristineTuomi, Tiinamaijavan 't Hooft, Ferdinand MWalker, MarkWeedon, Michael NXie, WeijiaZethelius, BjörnDIAGRAM ConsortiumGIANT ConsortiumMuTHER ConsortiumCARDIoGRAM ConsortiumC4D ConsortiumOngen, HalitMälarstig, AndersHopewell, Jemma CSaleheen, DanishChambers, JohnParish, SarahDanesh, JohnKooner, JaspalOstenson, Claes-GöranLind, LarsCooper, Cyrus CSerrano-Ríos, ManuelFerrannini, EleForsen, Tom JClarke, RobertFranzosi, Maria GraziaSeedorf, UdoWatkins, HughFroguel, PhilippeJohnson, PaulDeloukas, PanosCollins, Francis SLaakso, MarkkuDermitzakis, Emmanouil TBoehnke, MichaelMcCarthy, Mark IWareham, Nicholas JGroop, LeifPattou, FrançoisGloyn, Anna LDedoussis, George V
Source
Diabetes. 60(10)
Subject
DIAGRAM Consortium
GIANT Consortium
MuTHER Consortium
CARDIoGRAM Consortium
C4D Consortium
Humans
Diabetes Mellitus
Type 2
Insulin
Proinsulin
Fasting
Genotype
Polymorphism
Single Nucleotide
Genome
Human
Adult
Female
Male
Genetic Variation
Diabetes Mellitus
Type 2
Polymorphism
Single Nucleotide
Genome
Human
Endocrinology & Metabolism
Medical and Health Sciences
Language
Abstract
ObjectiveProinsulin is a precursor of mature insulin and C-peptide. Higher circulating proinsulin levels are associated with impaired β-cell function, raised glucose levels, insulin resistance, and type 2 diabetes (T2D). Studies of the insulin processing pathway could provide new insights about T2D pathophysiology.Research design and methodsWe have conducted a meta-analysis of genome-wide association tests of ∼2.5 million genotyped or imputed single nucleotide polymorphisms (SNPs) and fasting proinsulin levels in 10,701 nondiabetic adults of European ancestry, with follow-up of 23 loci in up to 16,378 individuals, using additive genetic models adjusted for age, sex, fasting insulin, and study-specific covariates.ResultsNine SNPs at eight loci were associated with proinsulin levels (P < 5 × 10(-8)). Two loci (LARP6 and SGSM2) have not been previously related to metabolic traits, one (MADD) has been associated with fasting glucose, one (PCSK1) has been implicated in obesity, and four (TCF7L2, SLC30A8, VPS13C/C2CD4A/B, and ARAP1, formerly CENTD2) increase T2D risk. The proinsulin-raising allele of ARAP1 was associated with a lower fasting glucose (P = 1.7 × 10(-4)), improved β-cell function (P = 1.1 × 10(-5)), and lower risk of T2D (odds ratio 0.88; P = 7.8 × 10(-6)). Notably, PCSK1 encodes the protein prohormone convertase 1/3, the first enzyme in the insulin processing pathway. A genotype score composed of the nine proinsulin-raising alleles was not associated with coronary disease in two large case-control datasets.ConclusionsWe have identified nine genetic variants associated with fasting proinsulin. Our findings illuminate the biology underlying glucose homeostasis and T2D development in humans and argue against a direct role of proinsulin in coronary artery disease pathogenesis.