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The cell cycle regulator ecdysoneless cooperates with H-Ras to promote oncogenic transformation of human mammary epithelial cells

机译:蜕皮激素无细胞周期调节剂与H-Ras协同促进人乳腺上皮细胞的致癌转化

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摘要

The mammalian ortholog of Drosophila ecdysoneless (Ecd) gene product regulates Rb-E2F interaction and is required for cell cycle progression. Ecd is overexpressed in breast cancer and its overexpression predicts shorter survival in patients with ErbB2-positive tumors. Here, we demonstrate Ecd knock down (KD) in human mammary epithelial cells (hMECs) induces growth arrest, similar to the impact of Ecd Knock out (KO) in mouse embryonic fibroblasts. Furthermore, whole-genome mRNA expression analysis of control vs. Ecd KD in hMECs demonstrated that several of the top 40 genes that were down-regulated were E2F target genes. To address the role of Ecd in mammary oncogenesis, we overexpressed Ecd and/or mutant H-Ras in hTERT-immortalized hMECs. Cell cycle analyses revealed hMECs overexpressing Ecd+Ras showed incomplete arrest in G1 phase upon growth factor deprivation, and more rapid cell cycle progression in growth factor-containing medium. Analyses of cell migration, invasion, acinar structures in 3-D Matrigel and anchorage-independent growth demonstrated that Ecd+Ras-overexpressing cells exhibit substantially more dramatic transformed phenotype as compared to cells expressing vector, Ras or Ecd. Under conditions of nutrient deprivation, Ecd+Ras-overexpressing hMECs exhibited better survival, with substantial upregulation of the autophagy marker LC3 both at the mRNA and protein levels. Significantly, while hMECs expressing Ecd or mutant Ras alone did not form tumors in NOD/SCID mice, Ecd+Ras-overexpressing hMECs formed tumors, clearly demonstrating oncogenic cooperation between Ecd and mutant Ras. Collectively, we demonstrate an important co-oncogenic role of Ecd in the progression of mammary oncogenesis through promoting cell survival.
机译:果蝇蜕皮激素(Ecd)基因产物的哺乳动物直系同源物调节Rb-E2F相互作用,是细胞周期进程所需的。 Ecd在乳腺癌中过表达,其过表达预示着ErbB2阳性肿瘤患者的生存期较短。在这里,我们证明了人类乳腺上皮细胞(hMECs)中的Ecd敲除(KD)会诱导生长停滞,类似于Ecd敲除(KO)在小鼠胚胎成纤维细胞中的影响。此外,在hMECs中,对照与Ecd KD的全基因组mRNA表达分析表明,被下调的前40个基因中有几个是E2F靶基因。为了解决Ecd在乳腺肿瘤发生中的作用,我们在hTERT永生化hMECs中过表达Ecd和/或突变H-Ras。细胞周期分析显示,过度表达Ecd + Ras的hMECs在生长因子剥夺后在G1期不完全停滞,并且在含有生长因子的培养基中细胞周期进展更快。对细胞迁移,侵袭,3-D Matrigel中的腺泡结构和不依赖锚定生长的分析表明,与表达载体,Ras或Ecd的细胞相比,过表达Ecd + Ras的细胞表现出更为显着的转化表型。在营养剥夺的条件下,Ecd + Ras过表达的hMECs表现出更好的存活率,并且自噬标记物LC3在mRNA和蛋白质水平上都显着上调。值得注意的是,虽然仅表达Ecd或突变Ras的hMEC在NOD / SCID小鼠中并未形成肿瘤,但过表达Ecd + Ras的hMEC却形成了肿瘤,这清楚地证明了Ecd与突变Ras之间的致癌作用。集体地,我们证明了Ecd通过促进细胞存活在乳腺肿瘤发生发展中的重要的致癌作用。

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