Key result
A genome-wide search in Nigerian families identified strong evidence for a quantitative trait locus for circulating ACE on chromosome 17 (Zmax = 3.5) and suggestive linkage on chromosome 4 (Zmax = 2.2).
Observational (n=2,079)
Effect estimate: Zmax = 3.5
This study provides further evidence for a quantitative trait locus on chromosome 4 that influences circulating ACE levels independently of the ACE gene.
Hypothesis-generating for ACE regulatory loci; leaves open clinical relevance pending replication in diverse cohorts.
BACKGROUND: Angiotensin I-converting enzyme (ACE) plays an important role in cardiovascular homeostasis. There is evidence from different ethnic groups that circulating ACE levels are influenced by a quantitative trait locus (QTL) at the ACE gene on chromosome 17. The finding of significant residual familial correlations in different ethnic groups, after accounting for this QTL, and the finding of support for linkage to a locus on chromosome 4 in Mexican-American families strongly suggest that there may well be QTLs for ACE unlinked to the ACE gene. METHODS: A genome-wide panel of microsatellite markers, and a panel of biallelic polymorphisms in the ACE gene were typed in Nigerian families. Single locus models with fixed parameters were used to test for linkage to circulating ACE with and without adjustment for the effects of the ACE gene polymorphisms. RESULTS: Strong evidence was found for D17S2193 (Zmax = 3.5); other nearby markers on chromosome 17 also showed modest support. After adjustment for the effects of the ACE gene locus, evidence of "suggestive linkage" to circulating ACE was found for D4S1629 (Zmax = 2.2); this marker is very close to a locus previously shown to be linked to circulating ACE levels in Mexican-American families. CONCLUSION: In this report we have provided further support for the notion that there are QTLs for ACE unlinked to the ACE gene; our findings for chromosome 4, which appear to replicate the findings of a previous independent study, should be considered strong grounds for a more detailed examination of this region in the search for genes/variants which influence ACE levels.The poor yields, thus far, in defining the genetic determinants of hypertension risk suggest a need to look beyond simple relationships between genotypes and the ultimate phenotype. In addition to incorporating information on important environmental exposures, a better understanding of the factors which influence the building blocks of the blood pressure homeostatic network is also required. Detailed studies of the genetic determinants of ACE, an important component of the renin-angiotensin system, have the potential to contribute to this strategic objective.
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McKenzie et al. (2008) conducted an observational in Genetic determinants of circulating ACE levels (n=2,079). Genetic loci (microsatellite markers) was evaluated on Maximum lod score (Zmax) for linkage to plasma ACE levels (Zmax = 3.5). A genome-wide search in Nigerian families identified strong evidence for a quantitative trait locus for circulating ACE on chromosome 17 (Zmax = 3.5) and suggestive linkage on chromosome 4 (Zmax = 2.2).
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