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Identification of Novel Genetic Determinants of Erythrocyte Membrane Fatty Acid Composition among Greenlanders

机译:格陵兰岛红细胞膜脂肪酸组成的新型遗传决定因素的鉴定

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摘要

Fatty acids (FAs) are involved in cellular processes important for normal body function, and perturbation of FA balance has been linked to metabolic disturbances, including type 2 diabetes. An individual’s level of FAs is affected by diet, lifestyle, and genetic variation. We aimed to improve the understanding of the mechanisms and pathways involved in regulation of FA tissue levels, by identifying genetic loci associated with inter-individual differences in erythrocyte membrane FA levels. We assessed the levels of 22 FAs in the phospholipid fraction of erythrocyte membranes from 2,626 Greenlanders in relation to single nucleotide polymorphisms genotyped on the MetaboChip or imputed. We identified six independent association signals. Novel loci were identified on chromosomes 5 and 11 showing strongest association with oleic acid (rs76430747 in ACSL6, beta (SE): -0.386% (0.034), p = 1.8x10-28) and docosahexaenoic acid (rs6035106 in DTD1, 0.137% (0.025), p = 6.4x10-8), respectively. For a missense variant (rs80356779) in CPT1A, we identified a number of novel FA associations, the strongest with 11-eicosenoic acid (0.473% (0.035), p = 2.6x10-38), and for variants in FADS2 (rs174570), LPCAT3 (rs2110073), and CERS4 (rs11881630) we replicated known FA associations. Moreover, we observed metabolic implications of the ACSL6 (rs76430747) and CPT1A (rs80356779) variants, which both were associated with altered HbA1c (0.051% (0.013), p = 5.6x10-6 and -0.034% (0.016), p = 3.1x10-4, respectively). The latter variant was also associated with reduced insulin resistance (HOMA-IR, -0.193 (0.050), p = 3.8x10-6), as well as measures of smaller body size, including weight (-2.676 kg (0.523), p = 2.4x10-7), lean mass (-1.200 kg (0.271), p = 1.7x10-6), height (-0.966 cm (0.230), p = 2.0x10-5), and BMI (-0.638 kg/m2 (0.181), p = 2.8x10-4). In conclusion, we have identified novel genetic determinants of FA composition in phospholipids in erythrocyte membranes, and have shown examples of links between genetic variants associated with altered FA membrane levels and changes in metabolic traits.
机译:脂肪酸(FAs)参与对身体正常功能至关重要的细胞过程,并且FA平衡的紊乱已与包括2型糖尿病在内的代谢紊乱有关。个体的脂肪酸水平受饮食,生活方式和遗传变异的影响。我们旨在通过鉴定与个体间红细胞膜FA水平差异相关的遗传基因座,增进对FA组织水平调节所涉及的机制和途径的了解。我们评估了来自2626格陵兰人的红细胞膜磷脂部分中22种FA的水平,与在MetaboChip上进行基因分型或估算的单核苷酸多态性有关。我们确定了六个独立的关联信号。在5号和11号染色体上鉴定出新位点,显示与油酸(ACSL6中的rs76430747,β(SE):-0.386%(0.034),p = 1.8x10 -28 )和二十二碳六烯酸( DTD1中的rs6035106,分别为0.137%(0.025),p = 6.4x10 -8 )。对于CPT1A中的一个错义变异(rs80356779),我们确定了许多新颖的FA关联,其中最强的是11-二十碳烯酸(0.473%(0.035),p = 2.6x10 -38 ),对于我们复制了已知的FA关联,复制了FADS2(rs174570),LPCAT3(rs2110073)和CERS4(rs11881630)中的变体。此外,我们观察到了ACSL6(rs76430747)和CPT1A(rs80356779)变体的代谢影响,它们均与HbA1c的改变有关(0.051%(0.013),p = 5.6x10 -6 和-0.034% (0.016),p分别为3.1x10 -4 )。后一种变体还与胰岛素抵抗降低有关(HOMA-IR,-0.193(0.050),p = 3.8x10 -6 ),以及较小的身体尺寸,包括体重(-2.676)千克(0.523),p = 2.4x10 -7 ),瘦体重(-1.200千克(0.271),p = 1.7x10 -6 ),身高(-0.966 cm (0.230),p = 2.0x10 -5 )和BMI(-0.638 kg / m 2 (0.181),p = 2.8x10 -4 )。总之,我们已经确定了红细胞膜磷脂中FA组成的新遗传决定因素,并显示了与FA膜水平改变和代谢性状改变相关的遗传变异之间的联系的例子。

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