Beaumont, Robin NWarrington, Nicole MCavadino, AlanaTyrrell, JessicaNodzenski, MichaelHorikoshi, MomokoGeller, FrankMyhre, RonnyRichmond, Rebecca CPaternoster, LaviniaBradfield, Jonathan PKreiner-Møller, EskilHuikari, VilleMetrustry, SarahLunetta, Kathryn LPainter, Jodie NHottenga, Jouke-JanAllard, CatherineBarton, Sheila JEspinosa, AnaMarsh, Julie APotter, CatherineZhang, GeAng, WeiBerry, Diane JBouchard, LuigiDas, ShiktaHakonarson, HakonHeikkinen, JaniHelgeland, ØyvindHocher, BertholdHofman, AlbertInskip, Hazel MJones, Samuel EKogevinas, ManolisLind, Penelope AMarullo, LetiziaMedland, Sarah EMurray, AnnaMurray, Jeffrey CNjølstad, Pål RNohr, Ellen AReichetzeder, ChristophRing, Susan MRuth, Katherine SSanta-Marina, LoretoScholtens, Denise MSebert, SylvainSengpiel, VerenaTuke, Marcus AVaudel, MarcWeedon, Michael NWillemsen, GonnekeWood, Andrew RYaghootkar, HaniehMuglia, Louis JBartels, MeikeRelton, Caroline LPennell, Craig EChatzi, LedaEstivill, XavierHolloway, John WBoomsma, Dorret IMontgomery, Grant WMurabito, Joanne MSpector, Tim DPower, ChristineJärvelin, Marjo-RittaBisgaard, HansGrant, Struan F ASørensen, Thorkild I AJaddoe, Vincent WJacobsson, BoMelbye, MadsMcCarthy, Mark IHattersley, Andrew THayes, M GeoffreyFrayling, Timothy MHivert, Marie-FranceFelix, Janine FHyppönen, ElinaLowe, William LEvans, David MLawlor, Debbie AFeenstra, BjarkeFreathy, Rachel M2018-05-302018Beaumont, R. N., N. M. Warrington, A. Cavadino, J. Tyrrell, M. Nodzenski, M. Horikoshi, F. Geller, et al. 2018. “Genome-wide association study of offspring birth weight in 86 577 women identifies five novel loci and highlights maternal genetic effects that are independent of fetal genetics.” Human Molecular Genetics 27 (4): 742-756. doi:10.1093/hmg/ddx429. http://dx.doi.org/10.1093/hmg/ddx429.http://nrs.harvard.edu/urn-3:HUL.InstRepos:37068050Abstract Genome-wide association studies of birth weight have focused on fetal genetics, whereas relatively little is known about the role of maternal genetic variation. We aimed to identify maternal genetic variants associated with birth weight that could highlight potentially relevant maternal determinants of fetal growth. We meta-analysed data on up to 8.7 million SNPs in up to 86 577 women of European descent from the Early Growth Genetics (EGG) Consortium and the UK Biobank. We used structural equation modelling (SEM) and analyses of mother–child pairs to quantify the separate maternal and fetal genetic effects. Maternal SNPs at 10 loci (MTNR1B, HMGA2, SH2B3, KCNAB1, L3MBTL3, GCK, EBF1, TCF7L2, ACTL9, CYP3A7) were associated with offspring birth weight at P < 5 × 10−8. In SEM analyses, at least 7 of the 10 associations were consistent with effects of the maternal genotype acting via the intrauterine environment, rather than via effects of shared alleles with the fetus. Variants, or correlated proxies, at many of the loci had been previously associated with adult traits, including fasting glucose (MTNR1B, GCK and TCF7L2) and sex hormone levels (CYP3A7), and one (EBF1) with gestational duration. The identified associations indicate that genetic effects on maternal glucose, cytochrome P450 activity and gestational duration, and potentially on maternal blood pressure and immune function, are relevant for fetal growth. Further characterization of these associations in mechanistic and causal analyses will enhance understanding of the potentially modifiable maternal determinants of fetal growth, with the goal of reducing the morbidity and mortality associated with low and high birth weights.en-USGenome-wide association study of offspring birth weight in 86 577 women identifies five novel loci and highlights maternal genetic effects that are independent of fetal geneticsJournal Article2018-05-3010.1093/hmg/ddx429