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Rat Mcs5a is a compound quantitative trait locus with orthologous human loci that associate with breast cancer risk. | LitMetric

AI Article Synopsis

  • Breast cancer risk is influenced by multiple genes, and researchers have identified a specific locus (Mcs5a) in rats that can reduce the risk of developing mammary cancer by 50% when certain alleles are present.
  • The study pinpointed two non-coding elements (Mcs5a1 and Mcs5a2) that interact and affect cancer resistance, with one element influencing a gene involved in protein degradation (Fbxo10) and the other linked to another gene (Frmpd1).
  • In human studies involving around 12,000 women, specific genetic variations (minor alleles) were found to be associated with breast cancer risk: one increased risk while the other decreased it, indicating the complex genetic basis of breast

Article Abstract

Breast cancer risk is a polygenic trait. To identify breast cancer modifier alleles that have a high population frequency and low penetrance we used a comparative genomics approach. Quantitative trait loci (QTL) were initially identified by linkage analysis in a rat mammary carcinogenesis model followed by verification in congenic rats carrying the specific QTL allele under study. The Mcs5a locus was identified by fine-mapping Mcs5 in a congenic model. Here we characterize the Mcs5a locus, which when homozygous for the Wky allele, reduces mammary cancer risk by 50%. The Mcs5a locus is a compound QTL with at least two noncoding interacting elements: Mcs5a1 and Mcs5a2. The resistance phenotype is only observed in rats carrying at least one copy of the Wky allele of each element on the same chromosome. Mcs5a1 is located within the ubiquitin ligase Fbxo10, whereas Mcs5a2 includes the 5' portion of Frmpd1. Resistant congenic rats show a down-regulation of Fbxo10 in the thymus and an up-regulation of Frmpd1 in the spleen. The association of the Mcs5a1 and Mcs5a2 human orthologs with breast cancer was tested in two population-based breast cancer case-control studies (approximately 12,000 women). The minor alleles of rs6476643 (MCS5A1) and rs2182317 (MCS5A2) were independently associated with breast cancer risk. The minor allele of rs6476643 increases risk, whereas the rs2182317 minor allele decreases risk. Both alleles have a high population frequency and a low penetrance toward breast cancer risk.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1847458PMC
http://dx.doi.org/10.1073/pnas.0701687104DOI Listing

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