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白血病相关的核仁磷酸蛋白(NPM)突变体导致Arf肿瘤抑制因子的去定位和不稳定。

Delocalization and destabilization of the Arf tumor suppressor by the leukemia-associated NPM mutant.

作者信息

Colombo Emanuela, Martinelli Paola, Zamponi Raffaella, Shing Danielle C, Bonetti Paola, Luzi Lucilla, Volorio Sara, Bernard Loris, Pruneri Giancarlo, Alcalay Myriam, Pelicci Pier Giuseppe

机构信息

Department of Experimental Oncology, European Institute of Oncology, Milan, Italy.

出版信息

Cancer Res. 2006 Mar 15;66(6):3044-50. doi: 10.1158/0008-5472.CAN-05-2378.

Abstract

One third of acute myeloid leukemias (AMLs) are characterized by the aberrant cytoplasmic localization of nucleophosmin (NPM) due to mutations within its putative nucleolar localization signal. NPM mutations are mutually exclusive with major AML-associated chromosome rearrangements and are frequently associated with a normal karyotype, suggesting that they are critical during leukemogenesis. The underlying molecular mechanisms are, however, unknown. NPM is a nucleocytoplasmic shuttling protein that has been implicated in several cellular processes, including ribosome biogenesis, centrosome duplication, cell cycle progression, and stress response. It has been recently shown that NPM is required for the stabilization and proper nucleolar localization of the tumor suppressor p19(Arf). We report here that the AML-associated NPM mutant localizes mainly in the cytoplasm due to an alteration of its nucleus-cytoplasmic shuttling equilibrium, forms a direct complex with p19(Arf), but is unable to protect it from degradation. Consequently, cells or leukemic blasts expressing the NPM mutant have low levels of cytoplasmic Arf. Furthermore, we show that expression of the NPM mutant reduces the ability of Arf to initiate a p53 response and to induce cell cycle arrest. Inactivation of p19(Arf), a key regulator of the p53-dependent cellular response to oncogene expression, might therefore contribute to leukemogenesis in AMLs with mutated NPM.

摘要

三分之一的急性髓系白血病(AML)的特征是核仁磷酸蛋白(NPM)在细胞质中的异常定位,这是由于其假定的核仁定位信号内发生了突变。NPM突变与主要的AML相关染色体重排相互排斥,并且经常与正常核型相关,这表明它们在白血病发生过程中至关重要。然而,其潜在的分子机制尚不清楚。NPM是一种穿梭于核质之间的蛋白质,参与了包括核糖体生物合成、中心体复制、细胞周期进程和应激反应在内的多个细胞过程。最近有研究表明,NPM是肿瘤抑制因子p19(Arf)稳定和正确核仁定位所必需的。我们在此报告,与AML相关的NPM突变体主要定位于细胞质中,这是由于其核质穿梭平衡发生了改变,它与p19(Arf)形成直接复合物,但无法保护其免受降解。因此,表达NPM突变体的细胞或白血病原始细胞中细胞质Arf水平较低。此外,我们还表明,NPM突变体的表达降低了Arf启动p53反应和诱导细胞周期停滞的能力。因此,p19(Arf)作为p53依赖性细胞对癌基因表达反应的关键调节因子,其失活可能有助于NPM突变的AML白血病的发生。

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