Multiethnic genome-wide meta-analysis of ectopic fat depots identifies loci associated with adipocyte development and differentiation.
Audrey Y ChuXuan DengVirginia A FisherAlexander DrongYang ZhangMary F FeitosaChing-Ti LiuOlivia WeeksAudrey C ChohQing DuanThomas D DyerJohn D EicherXiuqing GuoNancy Heard- CostaTim KacprowskiJack W KentLeslie A LangeXinggang LiuKurt LohmanLingyi LuAnubha MahajanJeffrey R O'ConnellAnkita PariharJuan M PeraltaAlbert Vernon SmithYi ZhangGeorg HomuthAhmed H KissebahJoel KullbergRené LaquaLenore J LaunerMatthias NauckMichael OlivierPatricia A PeyserJames G TerryMary K WojczynskiJie YaoLawrence F BielakJohn BlangeroIngrid B BoreckiDonald W BowdenJohn Jeffrey CarrStefan A CzerwinskiJingzhong DingNele FriedrichVilmunder GudnasonTamara B HarrisErik IngelssonAndrew D JohnsonSharon L R KardiaCarl D LangefeldLars LindYongmei LiuBraxton D MitchellAndrew P MorrisThomas H MosleyJerome I RotterAlan R ShuldinerBradford TowneHenry VölzkeHenri WallaschofskiJames G WilsonMatthew AllisonCecilia M LindgrenWolfram GoesslingL Adrienne CupplesMatthew L SteinhauserCaroline S FoxPublished in: Nature genetics (2016)
Variation in body fat distribution contributes to the metabolic sequelae of obesity. The genetic determinants of body fat distribution are poorly understood. The goal of this study was to gain new insights into the underlying genetics of body fat distribution by conducting sample-size-weighted fixed-effects genome-wide association meta-analyses in up to 9,594 women and 8,738 men of European, African, Hispanic and Chinese ancestry, with and without sex stratification, for six traits associated with ectopic fat (hereinafter referred to as ectopic-fat traits). In total, we identified seven new loci associated with ectopic-fat traits (ATXN1, UBE2E2, EBF1, RREB1, GSDMB, GRAMD3 and ENSA; P < 5 × 10-8; false discovery rate < 1%). Functional analysis of these genes showed that loss of function of either Atxn1 or Ube2e2 in primary mouse adipose progenitor cells impaired adipocyte differentiation, suggesting physiological roles for ATXN1 and UBE2E2 in adipogenesis. Future studies are necessary to further explore the mechanisms by which these genes affect adipocyte biology and how their perturbations contribute to systemic metabolic disease.
Keyphrases
- genome wide
- adipose tissue
- insulin resistance
- dna methylation
- fatty acid
- copy number
- genome wide association
- polycystic ovary syndrome
- meta analyses
- high fat diet induced
- type diabetes
- metabolic syndrome
- systematic review
- randomized controlled trial
- small molecule
- magnetic resonance
- skeletal muscle
- weight loss
- high throughput
- transcription factor
- current status
- pregnancy outcomes