首页> 外文期刊>Nucleic Acids Research >An insulator loop resides between the synthetically interacting elements of the human/rat conserved breast cancer susceptibility locus MCS5A/Mcs5a
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An insulator loop resides between the synthetically interacting elements of the human/rat conserved breast cancer susceptibility locus MCS5A/Mcs5a

机译:绝缘子环位于人类/大鼠保守的乳腺癌易感性位点MCS5A / Mcs5a的合成相互作用元素之间

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Many low-penetrance breast cancer susceptibility loci are found to be located in non-protein-coding regions, suggesting their involvement in gene expression regulation. We identified the human/rat-conserved breast cancer susceptibility locus MCS5A/Mcs5a. This locus has been shown to act in a non-mammary cell-autonomous fashion through the immune system. The resistant Mcs5a allele from the Wistar-Kyoto (WKy) rat strain consists of two non-protein-coding genetic elements that must be located on the same chromosome to elicit the phenotype. In this study, we show the presence of a conserved higher order chromatin structure in MCS5A/Mcs5a located in between the synthetically interacting genetic elements. The looped elements are shown to be bound by CTCF and cohesin. We identify the downregulation of Fbxo10 expression in T cells as a strong candidate mechanism through which the interacting genetic elements of the resistant Mcs5a allele modulate mammary carcinoma susceptibility. Finally, we show that the human MCS5A polymorphisms associated with breast cancer risk are located at both sides of the looped structure and functionally interact to downregulate transcriptional activity, similar to rat Mcs5a. We propose a mechanistic model for MCS5a/Mcs5a in which a CTCF-mediated insulator loop encompassing the TOMM5/Tomm5 gene, resides in between and brings into closer physical proximity the synthetically and functionally interacting resistant genetic variants.
机译:发现许多低渗透性乳腺癌易感基因座位于非蛋白质编码区,表明它们参与基因表达调控。我们确定了人类/大鼠保守的乳腺癌易感性基因座MCS5A / Mcs5a。已显示该基因座通过免疫系统以非乳腺细胞自主方式起作用。来自Wistar-Kyoto(WKy)大鼠品系的抗性Mcs5a等位基因由两个非蛋白质编码遗传元件组成,必须位于同一染色体上才能引发该表型。在这项研究中,我们显示了位于保守相互作用的遗传元件之间的MCS5A / Mcs5a中存在保守的高阶染色质结构。显示出环状元素被CTCF和粘着蛋白结合。我们确定Fbxo10表达在T细胞中的下调是一个强大的候选机制,通过该机制,抗性Mcs5a等位基因的相互作用遗传元件可调节乳腺癌的易感性。最后,我们显示与乳腺癌风险相关的人MCS5A多态性位于环状结构的两侧,并且在功能上相互作用以下调转录活性,类似于大鼠Mcs5a。我们提出了一种MCS5a / Mcs5a的机制模型,其中包含TOMM5 / Tomm5基因的CTCF介导的绝缘子环位于两者之间,并使合成和功能相互作用的抗性遗传变异在物理上更接近。

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