Gatza Catherine E, Dumble Melissa, Kittrell Frances, Edwards David G, Dearth Robert K, Lee Adrian V, Xu Jianming, Medina Daniel, Donehower Lawrence A
Interdepartmental Graduate Program in Cell and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.
Dev Biol. 2008 Jan 1;313(1):130-41. doi: 10.1016/j.ydbio.2007.10.004. Epub 2007 Oct 12.
The tumor suppressor p53 is important for inhibiting the development of breast carcinomas. However, little is known about the effects of increased p53 activity on mammary gland development. Therefore, the effect of p53 dosage on mammary gland development was examined by utilizing the p53+/m mouse, a p53 mutant which exhibits increased wild-type p53 activity, increased tumor resistance, a shortened longevity, and a variety of accelerated aging phenotypes. Here we report that p53+/m virgin mice exhibit a defect in mammary gland ductal morphogenesis. Transplants of mammary epithelium into p53+/m recipient mice demonstrate decreased outgrowth of wild-type and p53+/m donor epithelium, suggesting systemic or stromal alterations in the p53+/m mouse. Supporting these data, p53+/m mice display decreased levels of serum IGF-1 and reduced IGF-1 signaling in virgin glands. The induction of pregnancy or treatment of p53+/m mice with estrogen, progesterone, estrogen and progesterone in combination, or IGF-1 stimulates ductal outgrowth, rescuing the p53+/m mammary phenotype. Serial mammary epithelium transplants demonstrate that p53+/m epithelium exhibits decreased transplant capabilities, suggesting early stem cell exhaustion. These data indicate that appropriate levels of p53 activity are important in regulating mammary gland ductal morphogenesis, in part through regulation of the IGF-1 pathway.
肿瘤抑制因子p53对抑制乳腺癌的发展很重要。然而,关于p53活性增加对乳腺发育的影响却知之甚少。因此,通过利用p53+/m小鼠来研究p53剂量对乳腺发育的影响,p53+/m小鼠是一种p53突变体,表现出野生型p53活性增加、肿瘤抗性增强、寿命缩短以及多种加速衰老的表型。我们在此报告,p53+/m处女小鼠在乳腺导管形态发生方面存在缺陷。将乳腺上皮移植到p53+/m受体小鼠中,结果显示野生型和p53+/m供体上皮的生长减少,这表明p53+/m小鼠存在系统性或基质性改变。支持这些数据的是,p53+/m小鼠处女腺中血清IGF-1水平降低且IGF-1信号传导减少。诱导怀孕或用雌激素、孕激素、雌激素和孕激素联合治疗或IGF-1处理p53+/m小鼠可刺激导管生长,挽救p53+/m乳腺表型。连续的乳腺上皮移植表明,p53+/m上皮的移植能力下降,提示早期干细胞耗竭。这些数据表明,适当水平的p53活性在调节乳腺导管形态发生中很重要,部分是通过调节IGF-1途径实现的。