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血清血管紧张素I转换酶水平的分离与连锁分析:两个数量性状位点的证据

Segregation and linkage analysis of serum angiotensin I-converting enzyme levels: evidence for two quantitative-trait loci.

作者信息

McKenzie C A, Julier C, Forrester T, McFarlane-Anderson N, Keavney B, Lathrop G M, Ratcliffe P J, Farrall M

机构信息

Wellcome Trust Centre for Human Genetics, University of Oxford, United Kingdom.

出版信息

Am J Hum Genet. 1995 Dec;57(6):1426-35.

Abstract

Human serum angiotensin I-converting enzyme (ACE) levels vary substantially between individuals and are highly heritable. Segregation analysis in European families has shown that more than half of the total variability in ACE levels is influenced by quantitative-trait loci (QTL). One of these QTLs is located within or close to the ACE locus itself. Combined segregation/linkage analysis in a series of African Caribbean families from Jamaica shows that the ACE insertion-deletion polymorphism is in moderate linkage disequilibrium with an ACE-linked QTL. Linkage analysis with a highly informative polymorphism at the neighboring growth-hormone gene (GH) shows surprisingly little support for linkage (LOD score [Z] = 0.12). An extended analysis with a two-QTL model, where an ACE-linked QTL interacts additively with an unlinked QTL, significantly improves both the fit of the model (P = .002) and the support for linkage between the ACe-linked QTL interacts additively with an unlinked QTL, significantly improves both the fit of the model (P = .002) and the support for linkage between the ACe-linked QTL and GH polymorphism (Z = 5.0). We conclude that two QTLs jointly influence serum ACE levels in this population. One QTL is located within or close to the ACE locus and explains 27% of the total variability; the second QTL is unlinked to the ACE locus and explains 52% of the variability. The identification of the molecular mechanisms underlying both QTLs is necessary in order to interpret the role of ACE in cardiovascular disease.

摘要

人血清血管紧张素I转换酶(ACE)水平在个体之间差异很大,且具有高度遗传性。对欧洲家庭的分离分析表明,ACE水平总变异的一半以上受数量性状位点(QTL)影响。其中一个QTL位于ACE基因座本身内部或附近。对来自牙买加的一系列非洲加勒比家庭进行的联合分离/连锁分析表明,ACE插入缺失多态性与一个与ACE连锁的QTL处于中度连锁不平衡状态。对相邻生长激素基因(GH)处具有高度信息性多态性的连锁分析显示,对连锁的支持出人意料地少(LOD分数[Z]=0.12)。使用双QTL模型进行的扩展分析表明,一个与ACE连锁的QTL与一个不连锁的QTL发生加性相互作用,这显著改善了模型的拟合优度(P = 0.002)以及对ACE连锁QTL与GH多态性之间连锁的支持(Z = 5.0)。我们得出结论,两个QTL共同影响该人群的血清ACE水平。一个QTL位于ACE基因座内部或附近,解释了总变异的27%;第二个QTL与ACE基因座不连锁,解释了52%的变异。为了解释ACE在心血管疾病中的作用,有必要确定这两个QTL潜在的分子机制。

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