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A locus on chromosome 10 influences C-reactive protein levels in two independent populations.

机译:第10号染色体上的一个位点影响两个独立种群中的C反应蛋白水平。

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High sensitivity C-reactive protein (hsCRP) is an independent risk factor for cardiovascular disease, such as stroke or coronary artery disease. Genetic factors influence significantly the inter-individual variability of hsCRP. The aim of this study was to identify genomic regions influencing hsCRP levels. A genome scan was performed in two independent studies of Caucasian populations, namely 513 Western-European families ascertained for myocardial infarction (n = 1,406) and 120 French-Canadian families diagnosed with hypertension (n = 758). In the myocardial infarction families, 31% of the inter-individual variation of hsCRP levels was explained by genetic factors (P = 0.0000015) and loci influencing hsCRP were identified on chromosomes 10 (at 141 cM) and 5 (at 150 cM) with multipoint LOD scores of 3.15 and 2.23, respectively. An additional suggestive signal was detected on chromosome 2 in subset analyses. A similar degree of heritability has been observed in a second independent population of French-Canadian hypertensive families for hsCRP (30%) and linkage results for chromosome 10 were confirmed with maximum LOD score of 2.7. We identified a chromosomal region in two independent populations which influences hsCRP in addition to several unique regions. This provides targets for the identification of genes involved in the regulation of hsCRP and the development and progression of vascular disease, including stroke.
机译:高敏C反应蛋白(hsCRP)是心血管疾病(例如中风或冠状动脉疾病)的独立危险因素。遗传因素显着影响hsCRP的个体间变异性。这项研究的目的是确定影响hsCRP水平的基因组区域。在两项针对高加索人群的独立研究中进行了基因组扫描,分别是确定为心肌梗塞的513个西欧家庭(n = 1,406)和被诊断患有高血压的120个法裔加拿大家庭(n = 758)。在心肌梗死家族中,hsCRP水平的个体间差异的31%由遗传因素解释(P = 0.0000015),并且在多染色体10号染色体(141 cM)和5号染色体(150 cM)上鉴定了影响hsCRP的基因座。 LOD分数分别为3.15和2.23。在子集分析中在2号染色体上检测到其他提示性信号。在法国-加拿大高血压家族的第二个独立人群中,hsCRP(30%)观察到了类似的遗传力,并且10号染色体的连锁结果被确认为最大LOD得分为2.7。我们在两个独立的群体中确定了一个染色体区域,该区域除了几个独特区域外还影响hsCRP。这为鉴定与hsCRP调控以及包括中风在内的血管疾病的发生和发展有关的基因提供了目标。

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