Department of Neurosurgery, The University of Texas MD Anderson Cancer Center, Houston, Texas 77030, USA.
Neurosurgery. 2012 Apr;70(4):1003-10; discussion 1010. doi: 10.1227/NEU.0b013e31823e5332.
A significant number of medulloblastomas (MBs) originate from abnormal activation of the sonic hedgehog/patched (SHH/PTC) signaling pathway. Although p53 deficiency enhances tumor formation in mice, inactivation of the p53 gene is seen in a minority of MBs. Wild-type p53-induced phosphatase 1 (WIP1) downregulates p53 expression and has been shown to be overexpressed in MBs.
We tested the hypothesis that overexpression of WIP1 enhances tumor formation in an SHH-dependent model of MB.
We used the RCAS/Ntv-a system to study the effect of WIP1 in vitro and in vivo. We transfected A375-TVA cells with RCAS-WIP1 and then exposed these cells to cisplatin to determine the effect on p53 expression. We modeled ectopic WIP1 expression independently and in combination with SHH in the cerebella of newborn mice to assess the effect on tumor formation. Mice were observed for 12 weeks or until neurological symptoms developed. The brains were examined for tumor formation.
A375-TVA cells infected with RCAS-WIP1 demonstrated reduced p53 expression after exposure to cisplatin compared with controls. We detected tumors in 12 of 35 mice (34%) injected with RCAS-WIP1 and RCAS-SHH. Tumors were detected in 3 of 40 mice (8%) injected with RCAS-SHH alone. The difference in tumor formation rates was significant (χ(2) test, P = < .01). Tumors did not form in mice injected with RCAS-WIP1 alone.
We show that ectopic expression of WIP1 cooperates with SHH to enhance formation of MB, although it is insufficient to induce tumors independently. Our results verify the role of WIP1 in MB formation and provide a crucial link to the inactivation of p53 in MBs.
大量的髓母细胞瘤(MB)起源于 sonic hedgehog/patched(SHH/PTC)信号通路的异常激活。尽管 p53 缺失会增强小鼠的肿瘤形成,但在少数 MB 中可见 p53 基因失活。野生型 p53 诱导的磷酸酶 1(WIP1)下调 p53 表达,并已在 MB 中显示过度表达。
我们检验了 WIP1 过表达是否会增强 SHH 依赖性 MB 模型中的肿瘤形成的假设。
我们使用 RCAS/Ntv-a 系统在体外和体内研究 WIP1 的作用。我们用 RCAS-WIP1 转染 A375-TVA 细胞,然后用顺铂处理这些细胞,以确定对 p53 表达的影响。我们独立地并与 SHH 一起在新生小鼠的小脑内建模异位 WIP1 表达,以评估对肿瘤形成的影响。观察小鼠 12 周或直至出现神经症状。检查大脑是否形成肿瘤。
与对照组相比,用 RCAS-WIP1 感染的 A375-TVA 细胞在暴露于顺铂后显示出 p53 表达降低。我们在注射 RCAS-WIP1 和 RCAS-SHH 的 35 只小鼠中有 12 只(34%)检测到肿瘤。在单独注射 RCAS-SHH 的 40 只小鼠中有 3 只(8%)检测到肿瘤。肿瘤形成率的差异具有统计学意义(χ2 检验,P <.01)。单独注射 RCAS-WIP1 的小鼠未形成肿瘤。
我们表明,WIP1 的异位表达与 SHH 合作增强 MB 的形成,尽管它不足以独立诱导肿瘤。我们的结果验证了 WIP1 在 MB 形成中的作用,并为 MB 中 p53 的失活提供了重要联系。