首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Genetically Increased Telomere Length and Aging-Related Traits in the UK Biobank
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Genetically Increased Telomere Length and Aging-Related Traits in the UK Biobank

机译:基因上增加了英国Biobank的端粒长度和衰老相关性状

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Telomere length (TL) shortens over time in most human cell types and is a potential biomarker of aging. However, the causal association of TL on physical and cognitive traits that decline with age has not been extensively examined in middle-aged adults. Using a Mendelian randomization (MR) approach, we utilized genetically increased TL (GI-TL) to estimate the impact of TL on aging-related traits among U.K. Biobank (UKB) participants (age 40-69 years). We manually curated 53 aging-related traits from the UKB and restricted to unrelated participants of British ancestry (n = 337,522). We estimated GI-TL as a linear combination of nine TL-associated single nucleotide polymorphisms (SNPs), each weighted by its previously-reported association with leukocyte TL. Regression models were used to assess the associations between GI-TL and each trait. We obtained MR estimates using the two-sample inverse variance weighted (IVW) approach. We identified six age-related traits associated with GI-TL (Bonferroni-corrected threshold p < .001): pulse pressure (PP) (p = 5.2 x 10(-14)), systolic blood pressure (SBP) (p = 2.9 x 10(-15)), diastolic blood pressure (DBP) (p = 5.5 x 10(-6)), hypertension (p = 5.5 x 10(-11)), forced expiratory volume (FEV1) (p = .0001), and forced vital capacity (FVC) (p = 3.8 x 10(-6)). Under MR assumptions, one standard deviation increase in TL (similar to 1,200 base pairs) increased PP, SBP, and DBP by 1.5, 2.3, and 0.8 mmHg, respectively, while FEV1 and FVC increased by 34.7 and 52.2 mL, respectively. The observed associations appear unlikely to be due to selection bias based on analyses including inverse probability weights and analyses of simulated data. These findings suggest that longer TL increases pulmonary function and blood pressure traits among middle-aged UKB participants.
机译:端粒长度(TL)在大多数人类细胞类型中随时间缩短,是衰老的潜在生物标志物。然而,TL与随着年龄增长而下降的身体和认知特征之间的因果关系尚未在中年成年人中得到广泛研究。使用孟德尔随机化(MR)方法,我们利用遗传增加的TL(GI TL)来估计TL对英国BiBoAK(UKB)参与者(年龄40-69岁)的衰老相关性状的影响。我们从UKB中手工整理了53个与衰老相关的特征,并仅限于英国血统的无关参与者(n=337522)。我们将GI-TL估计为九个TL相关单核苷酸多态性(SNPs)的线性组合,每个SNPs根据其先前报告的与白细胞TL的关联进行加权。使用回归模型评估GI-TL与每个性状之间的关联。我们使用两样本逆方差加权(IVW)方法获得MR估计。我们确定了与GI-TL(Bonferroni校正阈值p<0.001)相关的六个年龄相关特征:脉压(PP)(p=5.2x10(-14))、收缩压(SBP)(p=2.9x10(-15))、舒张压(DBP)(p=5.5x10(-6))、高血压(p=5.5x10(-11))、用力呼气量(FEV1)(p=0.0001)和用力肺活量(FVC)(p=3.8x10(-6))。在MR假设下,TL的一个标准偏差增加(类似于1200个碱基对)使PP、SBP和DBP分别增加1.5、2.3和0.8 mmHg,而FEV1和FVC分别增加34.7和52.2 mL。观察到的关联似乎不太可能是由于基于分析的选择偏差,包括逆概率权重和模拟数据分析。这些发现表明,在中年UKB参与者中,更长的TL增加了肺功能和血压特征。

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