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两种肿瘤抑制因子,p27Kip1和patched-1,协同作用以预防髓母细胞瘤。

Two tumor suppressors, p27Kip1 and patched-1, collaborate to prevent medulloblastoma.

作者信息

Ayrault Olivier, Zindy Frederique, Rehg Jerold, Sherr Charles J, Roussel Martine F

机构信息

Department of Genetics and Tumor Cell Biology, Mail Stop no. 350, 262 Danny Thomas Place, Memphis, TN 38105-3678, USA.

出版信息

Mol Cancer Res. 2009 Jan;7(1):33-40. doi: 10.1158/1541-7786.MCR-08-0369.

Abstract

Two cyclin-dependent kinase inhibitors, p18(Ink4c) and p27(Kip1), are required for proper cerebellar development. Loss of either of these proteins conferred a proliferative advantage to granule neuron progenitors, although inactivation of Kip1 exerted a greater effect. Mice heterozygous for Patched-1 (Ptc1+/-) that are either heterozygous or nullizygous for Kip1 developed medulloblastoma rapidly and with high penetrance. All tumors from Ptc1+/-;Kip1+/- or Ptc1+/-;Kip1-/- mice failed to express the wild-type Ptc1 allele, consistent with its role as a canonical "two-hit" tumor suppressor. In contrast, expression of the wild-type p27(Kip1) protein was invariably maintained in medulloblastomas arising in Ptc1+/-;Kip1+/- mice, indicating that Kip1 is haploinsufficient for tumor suppression. Although medulloblastomas occurring in Ptc1+/- mice were histopathologically heterogeneous and contained intermixed regions of both rapidly proliferating and nondividing more differentiated cells, tumors that also lacked Kip1 were uniformly less differentiated, more highly proliferative, and invasive. Molecular analysis showed that the latter medulloblastomas exhibited constitutive activation of the Sonic hedgehog signaling pathway without loss of functional p53. Apart from gains or losses of single chromosomes, with gain of chromosome 6 being the most frequent, no other chromosomal anomalies were identified by spectral karyotyping, and half of the medulloblastomas so examined retained a normal karyotype. In this respect, this mouse medulloblastoma model recapitulates the vast majority of human medulloblastomas that do not sustain TP53 mutations and are not aneuploid.

摘要

两种细胞周期蛋白依赖性激酶抑制剂p18(Ink4c)和p27(Kip1)是小脑正常发育所必需的。这两种蛋白中任何一种的缺失都会赋予颗粒神经元祖细胞增殖优势,尽管Kip1的失活作用更大。Patched-1 (Ptc1+/-)杂合且Kip1杂合或纯合缺失的小鼠会迅速且高频率地发生髓母细胞瘤。来自Ptc1+/-;Kip1+/-或Ptc1+/-;Kip1-/-小鼠的所有肿瘤均未表达野生型Ptc1等位基因,这与其作为典型“双打击”肿瘤抑制因子的作用一致。相比之下,在Ptc1+/-;Kip1+/-小鼠发生的髓母细胞瘤中,野生型p27(Kip1)蛋白的表达始终得以维持,这表明Kip1在肿瘤抑制方面单倍剂量不足。尽管Ptc1+/-小鼠发生的髓母细胞瘤在组织病理学上具有异质性,包含快速增殖和非分裂的更分化细胞的混合区域,但同时也缺乏Kip1的肿瘤分化程度均较低、增殖性更强且具有侵袭性。分子分析表明,后一种髓母细胞瘤表现出Sonic刺猬信号通路的组成性激活,而功能性p53并未缺失。除了单条染色体的增减(其中6号染色体增加最为常见)外,通过光谱核型分析未发现其他染色体异常,所检测的髓母细胞瘤中有一半保留了正常核型。在这方面,该小鼠髓母细胞瘤模型概括了绝大多数不发生TP53突变且非非整倍体的人类髓母细胞瘤。

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