首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >High frequency of hypermethylation at the 14-3-3 σ locus leads to gene silencing in breast cancer
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High frequency of hypermethylation at the 14-3-3 σ locus leads to gene silencing in breast cancer

机译:14-3-3σ基因座的高甲基化频率高导致乳腺癌基因沉默

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摘要

Expression of 14-3-3 σ (σ) is induced in response to DNA damage, and causes cells to arrest in G2. By SAGE (serial analysis of gene expression) analysis, we identified σ as a gene whose expression is 7-fold lower in breast carcinoma cells than in normal breast epithelium. We verified this finding by Northern blot analysis. Remarkably, σ mRNA was undetectable in 45 of 48 primary breast carcinomas. Genetic alterations at σ such as loss of heterozygosity were rare (1/20 informative cases), and no mutations were detected (0/34). On the other hand, hypermethylation of CpG islands in the σ gene was detected in 91% (75/82) of breast tumors and was associated with lack of gene expression. Hypermethylation of σ is functionally important, because treatment of σ-non-expressing breast cancer cell lines with the drug 5-aza-2′-deoxycytidine resulted in demethylation of the gene and synthesis of σ mRNA. Breast cancer cells lacking σ expression showed increased number of chromosomal breaks and gaps when exposed to γ-irradiation. Therefore, it is possible that loss of σ expression contributes to malignant transformation by impairing the G2 cell cycle checkpoint function, thus allowing an accumulation of genetic defects. Hypermethylation and loss of σ expression are the most consistent molecular alterations in breast cancer identified so far.
机译:响应DNA损伤,诱导表达14-3-3σ(σ),并使细胞停滞在G2中。通过SAGE(基因表达的序列分析)分析,我们确定σ为在乳腺癌细胞中的表达比正常乳腺癌上皮低7倍的基因。我们通过RNA印迹分析证实了这一发现。值得注意的是,在48例原发性乳腺癌中有45例未检测到σmRNA。杂合性丧失等在σ处的遗传改变很少见(1/20资料丰富的病例),并且未检测到突变(0/34)。另一方面,在91%(75/82)的乳腺肿瘤中检测到σ基因中CpG岛的甲基化过高,并与缺乏基因表达有关。 σ的超甲基化在功能上很重要,因为用药物5-氮杂2'-脱氧胞苷处理σ非表达的乳腺癌细胞系会导致基因脱甲基和σmRNA的合成。缺乏σ表达的乳腺癌细胞在暴露于γ射线时显示出更多的染色体断裂和缺口。因此,σ表达的损失有可能通过损害G2细胞周期检查点功能而有助于恶性转化,从而允许遗传缺陷的积累。迄今为止,甲基化过高和σ表达缺失是乳腺癌中最一致的分子改变。

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