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首页> 外文期刊>Oncogene >The Mcs7 quantitative trait locus is associated with an increased susceptibility to mammary cancer in congenic rats and an allele-specific imbalance
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The Mcs7 quantitative trait locus is associated with an increased susceptibility to mammary cancer in congenic rats and an allele-specific imbalance

机译:Mcs7数量性状基因座与同基因大鼠对乳癌的敏感性增加和等位基因特异性失衡有关

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Identification of high-penetrance breast cancer genes such as Brca1 has been accomplished by analysing familial cases. However, these genes occur at low frequency and do not account for the majority of genetic risk. Identification of low-penetrance alleles that occur commonly in populations may benefit from unbiased genome-wide screening. One such approach uses linkage studies in rodent models to identify homologous human candidates. The Wistar Kyoto (WKy) rat is resistant to mammary carcinomas induced with 7,12-dimethybenz[a]anthracene (DMBA), whereas the Wistar Furth (WF) strain is susceptible. Previous genome-wide linkage studies in crosses of these strains identified three WKy resistance quantitative trait loci, Mcs5, Mcs6 and Mcs8, and one predicted to increase susceptibility, Mcs7. The Mcs7 region on rat chromosome 10 (RNO10) is orthologous to human 17q, a common site of genetic aberrations in breast cancer. Here, we establish the independent phenotype conferred by Mcs7 using congenic rats carrying the WKy Mcs7 locus on a WF background. Tumor multiplicity was significantly higher (50%) in DMBA-treated congenics homozygous and heterozygous for the WKy allele at the Mcs7 locus, compared to controls. We also investigated allelic imbalance (AI) in mammary carcinomas from (WKy WF)F1 rats and Mcs7 heterozygous congenics. Of the four known WKy Mcs loci tested, only Mcs7 displayed AI. The pattern of AI in carcinomas from both F1 and Mcs7 congenic rats was similar, suggesting a WF allelic loss. Together, these data suggest that one or more breast cancer-related genes are located within the dominantly acting WKy allele at the Mcs7 locus.
机译:高通透性乳腺癌基因如Brca1的鉴定已通过分析家族病例完成。但是,这些基因的发生频率较低,并不占遗传风险的大部分。人群中常见的低渗透性等位基因的鉴定可能受益于全基因组筛选。一种这样的方法在啮齿动物模型中使用连锁研究来识别同源的人类候选者。 Wistar Kyoto(WKy)大鼠对7,12-二甲基苯并[a]蒽(DMBA)诱导的乳癌具有抗性,而Wistar Furth(WF)株则易感。先前在这些菌株的杂交中进行的全基因组连锁研究确定了三个WKy抗性定量性状基因座Mcs5,Mcs6和Mcs8,其中一个预测增加了敏感性,Mcs7。大鼠10号染色体(RNO10)上的Mcs7区与人类17q同源,后者是乳腺癌中遗传畸变的常见位点。在这里,我们使用在WF背景上携带WKy Mcs7基因座的同基因大鼠建立由Mcs7赋予的独立表型。与对照相比,在Mcs7位点WKy等位基因纯合和杂合的DMBA处理的同基因杂合子中,肿瘤多样性显着更高(50%)。我们还研究了来自(WKy WF)F1大鼠和Mcs7杂合子同基因的乳腺癌中的等位基因失衡(AI)。在测试的四个已知的WKy Mcs基因座中,只有Mcs7显示AI。 F1和Mcs7同基因大鼠的癌中AI模式相似,表明WF等位基因缺失。总之,这些数据表明一个或多个与乳腺癌相关的基因位于Mcs7基因座的主要起作用的WKy等位基因内。

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