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富含组氨酸糖蛋白的全基因组关联和连锁分析确定了与血浆富含组氨酸糖蛋白浓度相关的常见变异。

Genome-wide association and linkage analysis of histidine-rich glycoprotein identifies common variants associated with plasma histidine-rich glycoprotein concentrations.

作者信息

Underwood Mary I, Ozel Ayse Bilge, Deepak Tanay, McGee Beth, Siemieniak Dave, Malik Rida A, Teney Cherie, Kretz Colin A, Weitz Jeffery, Desch Karl C

机构信息

Department of Pediatrics, University of Michigan, Ann Arbor, Michigan, USA.

Department of Human Genetics, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Res Pract Thromb Haemost. 2025 Jun 24;9(5):102955. doi: 10.1016/j.rpth.2025.102955. eCollection 2025 Jul.

Abstract

BACKGROUND

The plasma protein histidine-rich glycoprotein (HRG) interacts with multiple plasma ligands with various roles in coagulation, immunity, and angiogenesis. Through its inhibition of factor XIIa, HRG regulates the contact pathway of blood coagulation. Plasma HRG concentrations are highly heritable and vary widely, which may impact HRG function.

OBJECTIVES

To determine the genetic factors contributing to HRG variability.

METHODS

Plasma HRG concentrations were measured in a healthy sibling cohort of 1152 subjects and a second healthy cohort of 2304 individuals of Irish descent. We performed genome-wide association study and meta-analysis on the European subset of these cohorts. Using the sibling subset of the 2 cohorts ( = 934 in 460 sibships), we explored linkage patterns to identify additional signals associated with variation in HRG concentrations that may be driven by rare variants. Two HRG missense variants associated with decreased HRG concentrations were expressed .

RESULTS

Narrow-sense heritability was estimated at 69%. Meta-analysis identified an association between HRG concentrations and 2 independent signals at the locus. Variants at these chromosome 3 loci collectively explained 45% of the variation in HRG concentrations. expression of 2 variants associated with decreased HRG concentrations had no impact on HRG secretion. Linkage analysis of HRG concentrations identified 3 further regions contributing to differences in HRG concentrations.

CONCLUSION

The results of this genome-wide association study, investigating HRG concentration variation in a healthy population, provide new insights into the genetic control of circulating HRG concentrations and generate data for colocalization and Mendelian randomization studies.

摘要

背景

血浆富含组氨酸糖蛋白(HRG)与多种血浆配体相互作用,在凝血、免疫和血管生成中发挥多种作用。通过抑制因子XIIa,HRG调节血液凝固的接触途径。血浆HRG浓度具有高度遗传性且差异很大,这可能会影响HRG的功能。

目的

确定导致HRG变异性的遗传因素。

方法

在1152名受试者的健康同胞队列和2304名爱尔兰裔健康人群队列中测量血浆HRG浓度。我们对这些队列的欧洲亚组进行了全基因组关联研究和荟萃分析。利用这两个队列的同胞亚组(460个同胞对中的934人),我们探索连锁模式以识别与HRG浓度变化相关的其他信号,这些信号可能由罕见变异驱动。表达了两个与HRG浓度降低相关的HRG错义变异。

结果

狭义遗传率估计为69%。荟萃分析确定了HRG浓度与该位点的2个独立信号之间的关联。这些3号染色体位点的变异共同解释了HRG浓度变异的45%。两个与HRG浓度降低相关的变异的表达对HRG分泌没有影响。HRG浓度的连锁分析确定了另外3个导致HRG浓度差异的区域。

结论

这项全基因组关联研究的结果,调查了健康人群中HRG浓度的变化,为循环HRG浓度的遗传控制提供了新的见解,并为共定位和孟德尔随机化研究生成了数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3af8/12314372/38f2aa265cd0/gr1.jpg

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