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rs9939609 FTO 基因型与 FTO 甲基化水平的关联影响澳大利亚农村人群的体重和端粒长度。

rs9939609 FTO genotype associations with FTO methylation level influences body mass and telomere length in an Australian rural population.

机构信息

Rural Clinical School, University of New South Wales, Sydney, New South Wales, Australia.

Rural Clinical School, University of MelbourneI, Shepparton, Victoria, Australia.

出版信息

Int J Obes (Lond). 2017 Sep;41(9):1427-1433. doi: 10.1038/ijo.2017.127. Epub 2017 May 31.

Abstract

BACKGROUND

The fat mass- and obesity-associated (FTO) gene influences energy homeostasis in humans. Although the obesity-related variant, rs9939609 has been replicated across a number of cohort studies, there remains significant variance and a low to modest association. Telomere length is another commonly reported obesity risk factor. We hypothesize understanding the associations between FTO rs9939609 with FTO methylation and telomere length will provide a more accurate assessment of obesity risk.

METHODS

Overall, 942 participants free of diabetes or pre-diabetes were included in the retrospective study. Leukocyte genomic DNA was analyzed for rs9939609 genotyping, FTO gene methylation and leukocyte telomere length (LTL) measurement.

RESULTS

In general linear models, rs9939609 AA genotypes were associated with increased fat percentage (3.15%, P=0.001), fat mass (4.16 kg, P=0.001), body mass index (BMI) (1.38, P=0.006) and waist circumference (3.35 cm, P=0.006), but not with FTO methylation or LTL in this overall population. However, when participants were stratified into higher and lower FTO methylation groups, the AA genotype possesses a 2.04-fold increased obesity risk in comparison to TT genotype (95%CI, 1.07-3.89, P=0.031) in participants with a higher FTO methylation level, but this association was absent in the lower FTO methylation sub-group. Moreover, AT and AA genotype carriers were associated with shorter LTL compared to TT carriers (P=0.020 and P=0.111, respectively) in the higher FTO methylation level group. However, this association was absent in the lower methylation group. Furthermore, FTO gene methylation level was significantly associated with LTL in the 942 samples (P=0.017).

CONCLUSIONS

FTO rs9939609 is associated with obesity risk and LTL in this study, where this association is only observed at higher, but not lower, FTO methylation levels of participants. Our data suggest association of multiple factors, including FTO methylation level, may be involved in one of several mechanisms underlying the commonly reported obesity risk of this FTO polymorphism.

摘要

背景

脂肪量和肥胖相关基因(FTO)在人类能量平衡中起作用。虽然肥胖相关的变异 rs9939609 在许多队列研究中得到了复制,但仍存在显著差异和低到中等程度的关联。端粒长度是另一个常见的肥胖风险因素。我们假设,了解 FTO rs9939609 与 FTO 甲基化和端粒长度之间的关联将提供对肥胖风险的更准确评估。

方法

在这项回顾性研究中,共有 942 名无糖尿病或前期糖尿病的参与者被纳入研究。分析白细胞基因组 DNA 以进行 rs9939609 基因分型、FTO 基因甲基化和白细胞端粒长度(LTL)测量。

结果

在一般线性模型中,与 TT 基因型相比,AA 基因型与脂肪百分比(3.15%,P=0.001)、脂肪量(4.16kg,P=0.001)、体重指数(BMI)(1.38,P=0.006)和腰围(3.35cm,P=0.006)的增加有关,但在整个人群中与 FTO 甲基化或 LTL 无关。然而,当参与者按较高和较低的 FTO 甲基化水平分层时,与 TT 基因型相比,AA 基因型在 FTO 甲基化水平较高的参与者中肥胖风险增加了 2.04 倍(95%CI,1.07-3.89,P=0.031),但在 FTO 甲基化水平较低的亚组中这种关联不存在。此外,与 TT 基因型携带者相比,在 FTO 甲基化水平较高的组中,AT 和 AA 基因型携带者的 LTL 较短(P=0.020 和 P=0.111)。然而,在较低的甲基化组中,这种关联不存在。此外,在 942 个样本中,FTO 基因甲基化水平与 LTL 显著相关(P=0.017)。

结论

在本研究中,FTO rs9939609 与肥胖风险和 LTL 相关,这种关联仅在参与者较高的 FTO 甲基化水平下观察到,而在较低的 FTO 甲基化水平下则没有。我们的数据表明,包括 FTO 甲基化水平在内的多种因素的关联可能参与了该 FTO 多态性常见肥胖风险的一个或多个机制。

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