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Myc is a Notch1 transcriptional target and a requisite for Notch1-induced mammary tumorigenesis in mice

机译:Myc是Notch1的转录靶点,是Notch1诱导的小鼠乳腺肿瘤发生的必要条件

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摘要

To explore the potential involvement of aberrant Notch1 signaling in breast cancer pathogenesis, we have used a transgenic mouse model. In these animals, mouse mammary tumor virus LTR-driven expression of the constitutively active intracellular domain of the Notch1 receptor (N1IC) causes development of lactation-dependent mammary tumors that regress upon gland involution but progress to nonregressing, invasive adenocarcinomas in subsequent pregnancies. Up-regulation of Myc in these tumors prompted a genetic investigation of a potential Notch1/Myc functional relationship in breast carcinogenesis. Conditional ablation of Myc in the mammary epithelium prevented the induction of regressing N1IC neoplasms and also reduced the incidence of nonregressing carcinomas, which developed with significantly increased latency. Molecular analyses revealed that both the mouse and human Myc genes are direct transcriptional targets of N1IC acting through its downstream Cbf1 transcriptional effector. Consistent with this mechanistic link, Notch1 and Myc expression is positively correlated by immunostaining in 38% of examined human breast carcinomas.
机译:为了探讨Notch1信号异常在乳腺癌发病中的潜在作用,我们使用了转基因小鼠模型。在这些动物中,小鼠乳腺肿瘤病毒LTR驱动的Notch1受体组成型活性细胞内结构域表达(N1IC)导致了泌乳依赖性乳腺肿瘤的发展,该乳腺依赖于腺体退化而退化,但在随后的妊娠中发展为无退化的浸润性腺癌。这些肿瘤中Myc的上调促使人们对乳腺癌的潜在Notch1 / Myc功能关系进行了基因研究。乳腺上皮中Myc的条件消融可防止N1IC消退肿瘤的诱导,也可减少非消退癌的发生率,后者的潜伏期显着增加。分子分析表明,小鼠和人类Myc基因都是通过其下游Cbf1转录效应子起作用的N1IC的直接转录靶标。与这种机制联系一致,Notch1和Myc表达在38%的人类乳腺癌中通过免疫染色呈正相关。

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