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首页> 外文期刊>Oncogene >Conditional knockout of N-Myc and STAT interactor disrupts normal mammary development and enhances metastatic ability of mammary tumors.
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Conditional knockout of N-Myc and STAT interactor disrupts normal mammary development and enhances metastatic ability of mammary tumors.

机译:N-Myc和STAT相互作用子的条件敲除会破坏正常的乳腺发育并增强乳腺肿瘤的转移能力。

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The process of organ development requires a delicate balance between cellular plasticity and differentiation. This balance is disrupted in cancer initiation and progression. N-Myc and STAT interactor (NMI: human or Nmi: murine) has emerged as a relevant player in the etiology of breast cancer. However, a fundamental understanding of its relevance to normal mammary biology is lacking. To gain insight into its normal function in mammary gland, we generated a mammary-specific Nmi knockout mouse model. We observed that Nmi protein expression is induced in mammary epithelium at the onset of pregnancy, in luminal cells and persists throughout lactation. Nmi knockout results in a precocious alveolar phenotype. These alveoli exhibit an extensive presence of nuclear β-catenin and enhanced Wnt/β-catenin signaling. The Nmi knockout pubertal ductal tree shows enhanced invasion of the mammary fatpad and increased terminal end bud numbers. Tumors from Nmi null mammary epithelium show a significant enrichment of poorly differentiated cells with elevated stem/progenitor markers, active Wnt/β-catenin signaling, highly invasive morphology as well as, increased number of distant metastases. Our study demonstrates that Nmi has a distinct role in the differentiation process of mammary luminal epithelial cell compartment and developmental aberrations resulting from Nmi absence contribute to metastasis and demonstrates that aberration in normal developmental program can lead to metastatic disease, highlighting the contribution and importance of luminal progenitor cells in driving metastatic disease.
机译:器官发育的过程需要细胞可塑性和分化之间的微妙平衡。这种平衡破坏了癌症的发生和发展。 N-Myc和STAT相互作用因子(NMI:人类或Nmi:鼠类)已成为乳腺癌病因学中的重要角色。然而,缺乏对其与正常乳腺生物学相关性的基本理解。为了深入了解其在乳腺中的正常功能,我们生成了乳腺特异性Nmi基因敲除小鼠模型。我们观察到,Nmi蛋白的表达在妊娠开始时在乳腺上皮中,在腔细胞中被诱导并且在整个泌乳期间持续存在。 Nmi基因敲除导致早熟的肺泡表型。这些肺泡表现出广泛的核β-catenin存在和增强的Wnt /β-catenin信号传导。 Nmi基因敲除的青春期导管树显示乳腺脂肪垫的侵袭增强,末端芽数增加。来自Nmi无效乳腺上皮的肿瘤显示出分化不良的细胞大量富集,具有干/祖细胞标记升高,活跃的Wnt /β-catenin信号传导,高度侵袭性的形态学以及远处转移的数量增加。我们的研究表明,Nmi在乳腺腔上皮细胞区室的分化过程中具有独特的作用,而由于缺乏Nmi而导致的发育畸变有助于转移,并表明正常发育程序中的畸变会导致转移性疾病,突出了腔内的贡献和重要性祖细胞在驱动转移性疾病。

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