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首页> 外文期刊>Molecular Cancer >Expression analysis of mitotic spindle checkpoint genes in breast carcinoma: role of NDC80/HEC1 in early breast tumorigenicity, and a two-gene signature for aneuploidy
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Expression analysis of mitotic spindle checkpoint genes in breast carcinoma: role of NDC80/HEC1 in early breast tumorigenicity, and a two-gene signature for aneuploidy

机译:乳腺癌中有丝分裂纺锤体检查点基因的表达分析:NDC80 / HEC1在早期乳腺癌致瘤性中的作用以及非整倍性的两个基因标记

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Background Aneuploidy and chromosomal instability (CIN) are common abnormalities in human cancer. Alterations of the mitotic spindle checkpoint are likely to contribute to these phenotypes, but little is known about somatic alterations of mitotic spindle checkpoint genes in breast cancer. Methods To obtain further insight into the molecular mechanisms underlying aneuploidy in breast cancer, we used real-time quantitative RT-PCR to quantify the mRNA expression of 76 selected mitotic spindle checkpoint genes in a large panel of breast tumor samples. Results The expression of 49 (64.5%) of the 76 genes was significantly dysregulated in breast tumors compared to normal breast tissues: 40 genes were upregulated and 9 were downregulated. Most of these changes in gene expression during malignant transformation were observed in epithelial cells. Alterations of nine of these genes, and particularly NDC80 , were also detected in benign breast tumors, indicating that they may be involved in pre-neoplastic processes. We also identified a two-gene expression signature ( PLK1 + AURKA ) which discriminated between DNA aneuploid and DNA diploid breast tumor samples. Interestingly, some DNA tetraploid tumor samples failed to cluster with DNA aneuploid breast tumors. Conclusion This study confirms the importance of previously characterized genes and identifies novel candidate genes that could be activated for aneuploidy to occur. Further functional analyses are required to clearly confirm the role of these new identified genes in the molecular mechanisms involved in breast cancer aneuploidy. The novel genes identified here, and/or the two-gene expression signature, might serve as diagnostic or prognostic markers and form the basis for novel therapeutic strategies.
机译:背景非整倍性和染色体不稳定性(CIN)是人类癌症中的常见异常。有丝分裂纺锤体检查点的改变可能有助于这些表型,但对乳腺癌中有丝分裂纺锤体检查点基因的体细胞改变知之甚少。方法为了进一步了解非整倍性在乳腺癌中的分子机制,我们使用实时定量RT-PCR定量分析了大量乳腺癌样品中76个选择的有丝分裂纺锤体检查点基因的mRNA表达。结果与正常乳腺组织相比,乳腺肿瘤中76个基因中有49个(64.5%)的表达显着失调:上调40个基因,下调9个基因。在上皮细胞中观察到了恶性转化过程中基因表达的大多数变化。在良性乳腺肿瘤中还检测到其中9个基因的变化,特别是NDC80,表明它们可能参与了肿瘤前过程。我们还确定了区分DNA非整倍体和DNA二倍体乳腺肿瘤样品的两个基因的表达特征(PLK1 + AURKA)。有趣的是,一些DNA四倍体肿瘤样品未能与DNA非整倍体乳腺肿瘤聚类。结论这项研究证实了先前表征的基因的重要性,并鉴定了可以被激活以产生非整倍性的新候选基因。需要进一步的功能分析,以明确确认这些新鉴定的基因在涉及乳腺癌非整倍性的分子机制中的作用。此处鉴定的新基因和/或双基因表达特征可能充当诊断或预后标志物,并构成新治疗策略的基础。

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