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首页> 外文期刊>Molecular oncology. >An integrated genomic analysis of Tudor domain-containing proteins identifies PHD finger protein 20-like 1 (PHF20L1) as a candidate oncogene in breast cancer
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An integrated genomic analysis of Tudor domain-containing proteins identifies PHD finger protein 20-like 1 (PHF20L1) as a candidate oncogene in breast cancer

机译:包含Tudor域的蛋白质的完整基因组分析确定了PHD手指蛋白质20样1(PHF20L1)是乳腺癌的候选癌基因

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Tudor domain-containing proteins (TDRDs), which recognize and bind to methyl-lysine/arginine residues on histones and non-histone proteins, play critical roles in regulating chromatin architecture, transcription, genomic stability, and RNA metabolism. Dysregulation of several TDRDs have been observed in various types of cancer. However, neither the genomic landscape nor clinical significance of TDRDs in breast cancer has been explored comprehensively. Here, we performed an integrated genomic and transcriptomic analysis of 41 TDRD genes in breast cancer (TCGA and METABRIC datasets) and identified associations among recurrent copy number alterations, gene expressions, clinicopathological features, and survival of patients. Among seven TDRDs that had the highest frequency (>10%) of gene amplification, the plant homeodomain finger protein 20-like 1 (PHF20L1) was the most commonly amplified (17.62%) TDRD gene in TCGA breast cancers. Different subtypes of breast cancer had different patterns of copy number and expression for each TDRD. Notably, amplification and overexpression of PHF20L1 were more prevalent in aggressive basal-like and Luminal B subtypes and were significantly associated with shorter survival of breast cancer patients. Furthermore, knockdown of PHF20L1 inhibited cell proliferation in PHF20L1-amplified breast cancer cell lines. PHF20L1 protein contains N-terminal Tudor and C-terminal plant homeodomain domains. Detailed characterization of PHF20L1 in breast cancer revealed that the Tudor domain likely plays a critical role in promoting cancer. Mechanistically, PHF20L1 might participate in regulating DNA methylation by stabilizing DNA methyltransferase 1 (DNMT1) protein in breast cancer. Thus, our results demonstrated the oncogenic potential of PHF20L1 and its association with poor prognostic parameters in breast cancer.
机译:含Tudor域的蛋白质(TDRD)识别并结合组蛋白和非组蛋白的甲基赖氨酸/精氨酸残基,在调节染色质结构,转录,基因组稳定性和RNA代谢中起关键作用。在各种类型的癌症中已经观察到几种TDRD的失调。然而,TDRDs在乳腺癌中的基因组格局和临床意义均未得到全面探讨。在这里,我们对乳腺癌中的41个TDRD基因(TCGA和METABRIC数据集)进行了完整的基因组和转录组分析,并确定了复发拷贝数变化,基因表达,临床病理特征和患者生存率之间的关联。在基因扩增频率最高(> 10%)的七个TDRD中,植物同源结构域指状蛋白20-like 1(PHF20L1)是TCGA乳腺癌中最常见的TDRD基因(占17.62%)。对于每个TDRD,不同的乳腺癌亚型具有不同的拷贝数和表达方式。值得注意的是,PHF20L1的扩增和过表达在侵袭性基底样和Luminal B亚型中更为普遍,并且与乳腺癌患者的较短生存期显着相关。此外,敲除PHF20L1可抑制PHF20L1扩增的乳腺癌细胞系中的细胞增殖。 PHF20L1蛋白包含N端Tudor和C端植物同源结构域。 PHF20L1在乳腺癌中的详细表征表明,Tudor结构域可能在促进癌症中起关键作用。从机理上讲,PHF20L1可能通过稳定乳腺癌中的DNA甲基转移酶1(DNMT1)蛋白来参与调节DNA甲基化。因此,我们的结果证明了PHF20L1的致癌潜力及其与乳腺癌预后不良的关联。

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