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Rare and low-frequency coding variants in CXCR2 and other genes are associated with hematological traits

机译:CXCR2和其他基因的稀有和低频编码变异与血液学特征有关

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Hematological traits are important clinical parameters. To test the effects of rare and low-frequency coding variants on hematological traits, we analyzed hemoglobin concentration, hematocrit levels, white blood cell (WBC) counts and platelet counts in 31,340 individuals genotyped on an exome array. We identified several missense variants in CXCR2 associated with reduced WBC count (gene-based P = 2.6 × 10 a ?'13). In a separate family-based resequencing study, we identified a CXCR2 frameshift mutation in a pedigree with congenital neutropenia that abolished ligand-induced CXCR2 signal transduction and chemotaxis. We also identified missense or splice-site variants in key hematopoiesis regulators (EPO, TFR2, HBB, TUBB1 and SH2B3) associated with blood cell traits. Finally, we were able to detect associations between a rare somatic JAK2 mutation (encoding p.Val617Phe) and platelet count (P = 3.9 × 10-22) as well as hemoglobin concentration (P = 0.002), hematocrit levels (P = 9.5 × 10-7) and WBC count (P = 3.1 × 10 -5). In conclusion, exome arrays complement genome-wide association studies in identifying new variants that contribute to complex human traits.
机译:血液学特征是重要的临床参数。为了测试稀有和低频编码变体对血液学特性的影响,我们分析了在外显子组阵列上进行基因分型的31,340名个体中的血红蛋白浓度,血细胞比容水平,白细胞(WBC)计数和血小板计数。我们在CXCR2中发现了几种与WBC计数减少有关的错义变体(基于基因的P = 2.6×10 a?13)。在一项单独的基于家庭的重测序研究中,我们在先天性中性粒细胞减少症的家系中发现了CXCR2移码突变,该突变消除了配体诱导的CXCR2信号转导和趋化性。我们还发现与血细胞特征相关的关键造血调节因子(EPO,TFR2,HBB,TUBB1和SH2B3)中的错义或剪接位点变异。最后,我们能够检测到罕见的体细胞JAK2突变(编码p.Val617Phe)与血小板计数(P = 3.9×10-22)以及血红蛋白浓度(P = 0.002),血细胞比容水平(P = 9.5× 10-7)和WBC计数(P = 3.1×10 -5)。总之,外显子组阵列可补充全基因组关联研究,以确定有助于复杂人类特征的新变异。

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