首页> 外文期刊>Circulation research: a journal of the American Heart Association >Identification of cis- and trans-acting genetic variants explaining up to half the variation in circulating vascular endothelial growth factor levels.
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Identification of cis- and trans-acting genetic variants explaining up to half the variation in circulating vascular endothelial growth factor levels.

机译:顺式和反式遗传变异的鉴定,可解释循环血管内皮生长因子水平变化的一半。

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RATIONALE: Vascular endothelial growth factor (VEGF) affects angiogenesis, atherosclerosis, and cancer. Although the heritability of circulating VEGF levels is high, little is known about its genetic underpinnings. OBJECTIVE: Our aim was to identify genetic variants associated with circulating VEGF levels, using an unbiased genome-wide approach, and to explore their functional significance with gene expression and pathway analysis. METHODS AND RESULTS: We undertook a genome-wide association study of serum VEGF levels in 3527 participants of the Framingham Heart Study, with preplanned replication in 1727 participants from 2 independent samples, the STANISLAS Family Study and the Prospective Investigation of the Vasculature in Uppsala Seniors study. One hundred forty single nucleotide polymorphism (SNPs) reached genome-wide significance (P<5x10(-8)). We found evidence of replication for the most significant associations in both replication datasets. In a conditional genome-wide association study, 4 SNPs mapping to 3 chromosomal regions were independently associated with circulating VEGF levels: rs6921438 and rs4416670 (6p21.1, P=6.11x10(-506) and P=1.47x10(-12)), rs6993770 (8q23.1, P=2.50x10(-16)), and rs10738760 (9p24.2, P=1.96x10(-34)). A genetic score including these 4 SNPs explained 48% of the heritability of serum VEGF levels. Six of the SNPs that reached genome-wide significance in the genome-wide association study were significantly associated with VEGF messenger RNA levels in peripheral blood mononuclear cells. Ingenuity pathway analyses showed found plausible biological links between VEGF and 2 novel genes in these loci (ZFPM2 and VLDLR). CONCLUSIONS: Genetic variants explaining up to half the heritability of serum VEGF levels were identified. These new insights provide important clues to the pathways regulating circulating VEGF levels.
机译:理由:血管内皮生长因子(VEGF)影响血管生成,动脉粥样硬化和癌症。尽管循环VEGF水平的遗传力很高,但对其遗传基础了解甚少。目的:我们的目标是使用无偏见的全基因组方法来鉴定与循环VEGF水平相关的遗传变异,并通过基因表达和途径分析来探索其功能意义。方法和结果:我们对弗雷明汉心脏研究的3527名参与者进行了全基因组血清VEGF水平的全基因组关联研究,并从2个独立样本中进行了1727名参与者的预定复制,包括STANISLAS家庭研究和对Uppsala老年人的脉管系统的前瞻性研究。研究。一百四十个单核苷酸多态性(SNPs)达到了全基因组意义(P <5x10(-8))。我们发现两个复制数据集中最重要关联的复制证据。在一项有条​​件的全基因组关联研究中,映射到3个染色体区域的4个SNP与循环VEGF水平独立相关:rs6921438和rs4416670(6p21.1,P = 6.11x10(-506)和P = 1.47x10(-12)) ,rs6993770(8q23.1,P = 2.50x10(-16))和rs10738760(9p24.2,P = 1.96x10(-34))。包含这4个SNP的遗传评分解释了48%血清VEGF水平的遗传性。在全基因组关联研究中达到全基因组重要性的六个SNP与外周血单核细胞中的VEGF信使RNA水平显着相关。独创性途径分析表明,在这些基因座(ZFPM2和VLDLR)中的VEGF和2个新基因之间发现了合理的生物学联系。结论:遗传变异解释了最多一半的血清VEGF水平的遗传力。这些新见解为调节循环VEGF水平的途径提供了重要线索。

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