Novel loci for childhood body mass index and shared heritability with adult cardiometabolic traits.

Suzanne Vogelezang,Jonathan P Bradfield,Tarunveer S Ahluwalia,John A Curtin,Timo A Lakka,Niels Grarup,Markus Scholz,Peter J van der Most,Claire Monnereau,Evie Stergiakouli,Anni Heiskala,Momoko Horikoshi,Iryna O Fedko,Natalia Vilor-Tejedor,Diana L Cousminer,Marie Standl,Carol A Wang,Jorma Viikari,Frank Geller,Carmen Íñiguez,Niina Pitkänen,Alessandra Chesi,Jonas Bacelis,Loic Yengo,Maties Torrent,Ioanna Ntalla,Øyvind Helgeland,Saskia Selzam,Judith M Vonk, Mohammed H Zafarmand,Barbara Heude,Ismaa Sadaf Farooqi,Akram Alyass,Robin N Beaumont,Christian T Have,Peter Rzehak,Jose Ramon Bilbao,Theresia M Schnurr,Inês Barroso,Klaus Bønnelykke,Lawrence J Beilin,Lisbeth Carstensen,Marie-Aline Charles,Bo Chawes,Karine Clément,Ricardo Closa-Monasterolo,Adnan Custovic,Johan G Eriksson,Joaquin Escribano,Maria Groen-Blokhuis,Veit Grote,Dariusz Gruszfeld,Hakon Hakonarson,Torben Hansen,Andrew T Hattersley,Mette Hollensted,Jouke-Jan Hottenga,Elina Hyppönen,Stefan Johansson,Raimo Joro,Mika Kähönen,Ville Karhunen,Wieland Kiess,Bridget A Knight,Berthold Koletzko,Andreas Kühnapfel,Kathrin Landgraf,Jean-Paul Langhendries,Terho Lehtimäki,Jaakko T Leinonen, Aihuali Li,Virpi Lindi,Estelle Lowry,Mariona Bustamante,Carolina Medina-Gomez,Mads Melbye,Kim F Michaelsen,Camilla S Morgen,Trevor A Mori,Tenna R H Nielsen,Harri Niinikoski,Albertine J Oldehinkel,Katja Pahkala,Kalliope Panoutsopoulou,Oluf Pedersen,Craig E Pennell,Christine Power,Sijmen A Reijneveld,Fernando Rivadeneira,Angela Simpson,Peter D Sly,Jakob Stokholm, Kook K Teo,Elisabeth Thiering,Nicholas J Timpson,André G Uitterlinden,Catharina E M van Beijsterveldt,Barbera D C van Schaik,Marc Vaudel,Elvira Verduci,Rebecca K Vinding,Mandy Vogel,Eleftheria Zeggini,Sylvain Sebert,Mads V Lind,Christopher D Brown,Loreto Santa-Marina,Eva Reischl,Christine Frithioff-Bøjsøe,David Meyre,Eleanor Wheeler,Ken Ong,Ellen A Nohr,Tanja G M Vrijkotte,Gerard H Koppelman,Robert Plomin,Pål R Njølstad,George D Dedoussis,Philippe Froguel,Thorkild I A Sørensen,Bo Jacobsson,Rachel M Freathy,Babette S Zemel,Olli Raitakari,Martine Vrijheid,Bjarke Feenstra,Leo-Pekka Lyytikäinen,Harold Snieder,Holger Kirsten,Patrick G Holt,Joachim Heinrich,Elisabeth Widén,Jordi Sunyer, Dorret I Boomsma,Marjo-Riitta Järvelin,Antje Körner,George Davey Smith,Jens-Christian Holm,Mustafa Atalay,Clare Murray,Hans Bisgaard,Mark I McCarthy,Vincent W V Jaddoe,Struan F A Grant,Janine F Felix

PLOS GENETICS(2020)

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摘要
The genetic background of childhood body mass index (BMI), and the extent to which the well-known associations of childhood BMI with adult diseases are explained by shared genetic factors, are largely unknown. We performed a genome-wide association study meta-analysis of BMI in 61,111 children aged between 2 and 10 years. Twenty-five independent loci reached genome-wide significance in the combined discovery and replication analyses. Two of these, located nearNEDD4LandSLC45A3, have not previously been reported in relation to either childhood or adult BMI. Positive genetic correlations of childhood BMI with birth weight and adult BMI, waist-to-hip ratio, diastolic blood pressure and type 2 diabetes were detected (R(g)ranging from 0.11 to 0.76, P-values <0.002). A negative genetic correlation of childhood BMI with age at menarche was observed. Our results suggest that the biological processes underlying childhood BMI largely, but not completely, overlap with those underlying adult BMI. The well-known observational associations of BMI in childhood with cardio-metabolic diseases in adulthood may reflect partial genetic overlap, but in light of previous evidence, it is also likely that they are explained through phenotypic continuity of BMI from childhood into adulthood. Author summary Although twin studies have shown that body mass index (BMI) is highly heritable, many common genetic variants involved in the development of BMI have not yet been identified, especially in children. We studied associations of more than 40 million genetic variants with childhood BMI in 61,111 children aged between 2 and 10 years. We identified 25 genetic variants that were associated with childhood BMI. Two of these have not been implicated for BMI previously, located close to the genesNEDD4LandSLC45A3. We also show that the genetic background of childhood BMI overlaps with that of birth weight, adult BMI, waist-to-hip-ratio, diastolic blood pressure, type 2 diabetes, and age at menarche. Our results suggest that the biological processes underlying childhood BMI largely overlap with those underlying adult BMI. However, the overlap is not complete. Additionally, the genetic backgrounds of childhood BMI and other cardio-metabolic phenotypes are overlapping. This may mean that the associations of childhood BMI and later cardio-metabolic outcomes are partially explained by shared genetics, but it could also be explained by the strong association of childhood BMI with adult BMI.
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