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鉴定肿瘤抑制因子 p14arf 中核磷蛋白相互作用的新基序。

Identification of a novel nucleophosmin-interaction motif in the tumor suppressor p14arf.

机构信息

CERM, Centro Risonanze Magnetiche, Università di Firenze, Italy.

Dipartimento di Scienze Biomediche, Sperimentali e Cliniche - Università di Firenze, Italy.

出版信息

FEBS J. 2018 Mar;285(5):832-847. doi: 10.1111/febs.14373. Epub 2018 Jan 15.

Abstract

The tumor suppressor p14arf interacts, in response to oncogenic signals, with the p53 E3-ubiquitin ligase HDM2, thereby resulting in p53 stabilization and activation. In addition, it also exerts tumor-suppressive functions in p53-independent contexts. The activities of p14arf are regulated by the nucleolar chaperone nucleophosmin (NPM1), which controls its levels and cellular localization. In acute myeloid leukemia with mutations in the NPM1 gene, mutated NPM1 aberrantly translocates in the cytosol carrying with itself p14arf that is subsequently degraded, thus impairing the p14arf-HDM2-p53 axis. In this work we investigated the complex between these two proteins by means of NMR and other techniques. We identified a novel NPM1-interacting motif in the C-terminal region of p14arf, which corresponds to its predicted nucleolar localization signal. This motif recognizes a specific region of the NPM1 N-terminal domain and, upon binding, the two proteins form soluble high molecular weight complexes. By NMR, we identified critical residues on both proteins involved in the interaction. Collectively, our data provide a structural framework to rationalize the overall assembly of the p14arf-NPM1 supramolecular complexes. A number of p14arf cancer-associated mutations cluster in this motif and their effect on the interaction with NPM1 was also analyzed.

摘要

肿瘤抑制因子 p14arf 在响应致癌信号时与 p53 E3-泛素连接酶 HDM2 相互作用,从而导致 p53 稳定和激活。此外,它在 p53 非依赖性情况下也发挥肿瘤抑制功能。p14arf 的活性受核仁伴侣核磷蛋白(NPM1)的调节,NPM1 控制其水平和细胞定位。在 NPM1 基因发生突变的急性髓细胞白血病中,突变型 NPM1 异常易位到细胞质中,携带随后被降解的 p14arf,从而破坏 p14arf-HDM2-p53 轴。在这项工作中,我们通过 NMR 和其他技术研究了这两种蛋白质之间的复合物。我们在 p14arf 的 C 端区域鉴定了一个新的 NPM1 相互作用基序,该基序对应于其预测的核仁定位信号。该基序识别 NPM1 N 端结构域的特定区域,结合后,这两种蛋白质形成可溶性高分子量复合物。通过 NMR,我们确定了两个蛋白质相互作用中涉及的关键残基。总的来说,我们的数据提供了一个结构框架,以合理化 p14arf-NPM1 超分子复合物的整体组装。许多与癌症相关的 p14arf 突变聚集在这个基序中,我们还分析了它们对与 NPM1 相互作用的影响。

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