Association of gene coding variation and resting metabolic rate in a multi-ethnic sample of children and adults.

Q1 Medicine
BMC Obesity Pub Date : 2017-04-05 eCollection Date: 2017-01-01 DOI:10.1186/s40608-017-0145-5
Jacklyn N Hellwege, Digna R Velez Edwards, Sari Acra, Kong Chen, Maciej S Buchowski, Todd L Edwards
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引用次数: 5

Abstract

Background: Resting metabolic rates (RMR) vary across individuals. Understanding the determinants of RMR could provide biological insight into obesity and its metabolic consequences such as type 2 diabetes and cardiovascular diseases.

Methods: The present study measured RMR using reference standard indirect calorimetry and evaluated genetic variations from an exome array in a sample of children and adults (N = 262) predominantly of African and European ancestry with a wide range of ages (10 - 67 years old) and body mass indices (BMI; 16.9 - 56.3 kg/m2 for adults, 15.1 - 40.6 kg/m2 for children).

Results: Single variant analysis for RMR identified suggestive loci on chromosomes 15 (rs74010762, TRPM1, p-value = 2.7 × 10-6), 1 (rs2358728 and rs2358729, SH3D21, p-values < 5.8x10-5), 17 (AX-82990792, DHX33, 5.5 × 10-5) and 5 (rs115795863 and rs35433829, C5orf33 and RANBP3L, p-values < 8.2 × 10-5). To evaluate the effect of low frequency variations with RMR, we performed gene-based association tests. Our most significant locus was SH3D21 (p-value 2.01 × 10-4), which also contained suggestive results from single-variant analyses. A further investigation of all variants within the reported genes for all obesity-related loci from the GWAS catalog found nominal evidence for association of body mass index (BMI- kg/m2)-associated loci with RMR, with the most significant p-value at rs35433754 (TNKS, p-value = 0.0017).

Conclusions: These nominal associations were robust to adjustment for BMI. The most significant variants were also evaluated using phenome-wide association to evaluate pleiotropy, and genetically predicted gene expression using the summary statistics implicated loci related to in obesity and body composition. These results merit further examination in larger cohorts of children and adults.

Abstract Image

Abstract Image

多种族儿童和成人样本中基因编码变异与静息代谢率的关系。
背景:静息代谢率(RMR)因人而异。了解RMR的决定因素可以为肥胖及其代谢后果(如2型糖尿病和心血管疾病)提供生物学见解。方法:本研究使用参考标准间接量热法测量RMR,并评估来自外显子组阵列的遗传变异,该样本主要来自非洲和欧洲血统的儿童和成人(N = 262),年龄范围广泛(10 - 67岁)和体重指数(BMI;成人16.9 - 56.3 kg/m2,儿童15.1 - 40.6 kg/m2)。结果:RMR单变分析在15号染色体(rs74010762, TRPM1, p值= 2.7 × 10-6)、1号染色体(rs2358728和rs2358729, SH3D21, p值DHX33, 5.5 × 10-5)和5号染色体(rs115795863和rs35433829, C5orf33和RANBP3L, p值SH3D21 (p值2.01 × 10-4)上发现了暗示性位点,这些位点也含有单变分析的暗示性结果。对GWAS目录中所有肥胖相关基因座的所有变异的进一步调查发现了体重指数(BMI- kg/m2)相关基因座与RMR相关的名义证据,其中最显著的p值为rs35433754 (TNKS, p值= 0.0017)。结论:这些名义上的关联对于BMI调整是稳健的。最重要的变异也通过全表型关联来评估多效性,并通过与肥胖和身体组成相关的基因座的汇总统计来遗传预测基因表达。这些结果值得在更大的儿童和成人队列中进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Obesity
BMC Obesity Medicine-Health Policy
CiteScore
5.00
自引率
0.00%
发文量
0
期刊介绍: Cesation (2019). Information not localized.
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