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Large-scale genomic studies reveal central role of ABO in sP-selectin and sICAM-1 levels

机译:大规模基因组研究揭示了ABO在sP-选择素和sICAM-1水平中的核心作用

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摘要

P-selectin and intercellular adhesion molecule-1 (ICAM-1) participate in inflammatory processes by promoting adhesion of leukocytes to vascular wall endothelium. Their soluble levels have been associated with adverse cardiovascular events. To identify loci affecting soluble levels of P-selectin (sP-selectin) and ICAM-1 (sICAM-1), we performed a genome-wide association study in a sample of 4115 (sP-selectin) and 9813 (sICAM-1) individuals of European ancestry as a part of The Cohorts for Heart and Aging Research in Genome Epidemiology consortium. The most significant SNP association for sP-selectin was within the SELP gene (rs6136, P = 4.05 × 10−61) and for sICAM-1 levels within the ICAM-1 gene (rs3093030, P = 3.53 × 10−23). Both sP-selectin and sICAM-1 were associated with ABO gene variants (rs579459, P = 1.86 × 10−41 and rs649129, P = 1.22 × 10−15, respectively) and in both cases the observed associations could be accounted for by the A1 allele of the ABO blood group. The absence of an association between ABO blood group and platelet-bound P-selectin levels in an independent subsample (N = 1088) from the ARIC study, suggests that the ABO blood group may influence cleavage of the P-selectin protein from the cell surface or clearance from the circulation, rather than its production and cellular presentation. These results provide new insights into adhesion molecule biology.
机译:P-选择蛋白和细胞间粘附分子-1(ICAM-1)通过促进白细胞与血管壁内皮细胞的粘附而参与炎症过程。它们的可溶水平与不良心血管事件有关。为了确定影响P-选择素(sP-选择素)和ICAM-1(sICAM-1)可溶性水平的基因座,我们在4115(sP-选择素)和9813(sICAM-1)样本中进行了全基因组关联研究欧洲血统的个人,是基因组流行病学联盟“心脏和衰老研究队列”的一部分。 sP-选择蛋白最显着的SNP关联在SELP基因内(rs6136,P = 4.05×10 -61 )和ICAM-1基因内的sICAM-1水平(rs3093030,P = 3.53 ×10 −23 )。 sP-selectin和sICAM-1均与ABO基因变异相关(rs579459,P = 1.86×10 −41 和rs649129,P = 1.22×10 -15 ),在这两种情况下,观察到的关联都可以由ABO血型的A1等位基因解释。 ARIC研究的独立子样本(N = 1088)中ABO血型与血小板结合的P-选择素水平之间不存在关联,这表明ABO血型可能影响P-选择素蛋白从细胞表面的裂解或从循环中清除,而不是其产生和细胞形态。这些结果为粘附分子生物学提供了新的见解。

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