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婴幼儿及儿童早期体重指数的遗传结构特征分析

Characterization of the genetic architecture of infant and early childhood body mass index.

作者信息

Helgeland Øyvind, Vaudel Marc, Sole-Navais Pol, Flatley Christopher, Juodakis Julius, Bacelis Jonas, Koløen Ingvild L, Knudsen Gun Peggy, Johansson Bente B, Magnus Per, Kjennerud Ted Reichborn, Juliusson Petur B, Stoltenberg Camilla, Holmen Oddgeir L, Andreassen Ole A, Jacobsson Bo, Njølstad Pål R, Johansson Stefan

机构信息

Center for Diabetes Research, Department of Clinical Science, University of Bergen, Bergen, Norway.

Department of Genetics and Bioinformatics, Health Data and Digitalization, Norwegian Institute of Public Health, Oslo, Norway.

出版信息

Nat Metab. 2022 Mar;4(3):344-358. doi: 10.1038/s42255-022-00549-1. Epub 2022 Mar 21.

Abstract

Early childhood obesity is a growing global concern; however, the role of common genetic variation on infant and child weight development is unclear. Here, we identify 46 loci associated with early childhood body mass index at specific ages, matching different child growth phases, and representing four major trajectory patterns. We perform genome-wide association studies across 12 time points from birth to 8 years in 28,681 children and their parents (27,088 mothers and 26,239 fathers) in the Norwegian Mother, Father and Child Cohort Study. Monogenic obesity genes are overrepresented near identified loci, and several complex association signals near LEPR, GLP1R, PCSK1 and KLF14 point towards a major influence for common variation affecting the leptin-melanocortin system in early life, providing a link to putative treatment strategies. We also demonstrate how different polygenic risk scores transition from birth to adult profiles through early child growth. In conclusion, our results offer a fine-grained characterization of a changing genetic landscape sustaining early childhood growth.

摘要

儿童期肥胖是一个日益受到全球关注的问题;然而,常见基因变异对婴幼儿体重发育的作用尚不清楚。在此,我们识别出46个与特定年龄的儿童期体重指数相关的基因座,这些基因座与不同的儿童生长阶段相匹配,并代表四种主要的轨迹模式。我们在挪威母婴队列研究中,对28,681名儿童及其父母(27,088名母亲和26,239名父亲)从出生到8岁的12个时间点进行了全基因组关联研究。单基因肥胖基因在已识别的基因座附近过度富集,并且在LEPR、GLP1R、PCSK1和KLF14附近的几个复杂关联信号表明,常见变异对早期生活中影响瘦素 - 黑皮质素系统具有重大影响,这为潜在的治疗策略提供了联系。我们还展示了不同的多基因风险评分在儿童早期生长过程中如何从出生转变为成人特征。总之,我们的结果对维持儿童早期生长的不断变化的遗传格局进行了精细的刻画。

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