Abstract
1AbstractCytochromes P450 (CYP450) are hemoproteins generally involved in the detoxification of the body of xenobiotic molecules. They participate in the metabolism of many drugs and genetic polymorphisms in humans have been found to impact drugs responses and metabolic functions. In this study, we investigate the genetic diversity forCYP450genes. We found that two clusters,CYP3AandCYP4F, are notably differentiated across human populations with evidence for selective pressures acting on both clusters: we found signals of recent positive selection inCYP3AandCYP4Fgenes and signals of balancing selection inCYP4Fgenes. Furthermore, unusual linkage disequilibrium pattern is detected in both clusters, suggesting co-evolution of genes within clusters. Several of these selective signals co-localize with expression quantitative trait loci, which suggest co-regulation and epistasis within these highly important gene families. We also found that SNPs under selection in Africans within theCYP3Acluster are associated toCYP3A5expression levels which are causally associated with reticulocytes count, as established by mendelian randomization. Furthermore, as theCYP3AandCYP4Fsubfamilies are involved in the metabolism of nutrients and drugs, our findings linking natural selection and gene expression in these gene clusters are of importance in understanding population differences in human health.
Publisher
Cold Spring Harbor Laboratory
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