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Arf肿瘤抑制蛋白与核磷蛋白/B23的物理和功能相互作用。

Physical and functional interactions of the Arf tumor suppressor protein with nucleophosmin/B23.

作者信息

Bertwistle David, Sugimoto Masataka, Sherr Charles J

机构信息

Howard Hughes Medical Institute and Department of Genetics & Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.

出版信息

Mol Cell Biol. 2004 Feb;24(3):985-96. doi: 10.1128/MCB.24.3.985-996.2004.

Abstract

The Arf tumor suppressor inhibits cell cycle progression through both p53-dependent and p53-independent mechanisms, including interference with rRNA processing. Using tandem-affinity-tagged p19(Arf), we purified Arf-associated proteins from mouse NIH 3T3 fibroblasts undergoing cell cycle arrest. Tagged p19(Arf) associated with nucleolar and ribosomal proteins, including nucleophosmin/B23 (NPM), a protein thought to foster the maturation of preribosomal particles. NPM is an abundant protein, only a minor fraction of which binds to p19(Arf); however, a significant proportion of p19(Arf) associates with NPM. The interaction between p19(Arf) and NPM requires amino acid sequences at the Arf amino terminus, which are also required for Mdm2 binding, as well as the central acidic domain of NPM and an adjacent segment that regulates NPM oligomerization. The interaction between p19(Arf) and NPM occurs in primary mouse embryonic fibroblasts, including those lacking both Mdm2 and p53. In an NIH 3T3 derivative cell line (MT-Arf) engineered to conditionally express an Arf transgene, induced p19(Arf) associates with NPM and colocalizes with it in high-molecular-weight complexes (2 to 5 MDa). An NPM mutant lacking its carboxyl-terminal nucleic acid-binding domain oligomerizes with endogenous NPM, inhibits p19(Arf) from entering into 2- to 5-MDa particles, and overrides the ability of p19(Arf) to retard rRNA processing.

摘要

Arf肿瘤抑制因子通过p53依赖和p53非依赖机制抑制细胞周期进程,包括干扰rRNA加工。我们使用串联亲和标签标记的p19(Arf),从小鼠NIH 3T3成纤维细胞中纯化出与细胞周期停滞相关的Arf结合蛋白。标记的p19(Arf)与核仁蛋白和核糖体蛋白结合,包括核磷蛋白/B23(NPM),一种被认为促进核糖体前体颗粒成熟的蛋白。NPM是一种丰富的蛋白,只有一小部分与p19(Arf)结合;然而,相当比例的p19(Arf)与NPM相关联。p19(Arf)与NPM之间的相互作用需要Arf氨基末端的氨基酸序列,这也是与Mdm2结合所必需的,以及NPM的中央酸性结构域和一个调节NPM寡聚化的相邻片段。p19(Arf)与NPM之间的相互作用发生在原代小鼠胚胎成纤维细胞中,包括那些同时缺乏Mdm2和p53的细胞。在一个经过基因工程改造以条件性表达Arf转基因的NIH 3T3衍生细胞系(MT-Arf)中,诱导表达的p19(Arf)与NPM结合,并在高分子量复合物(2至5 MDa)中与其共定位。一个缺乏羧基末端核酸结合结构域的NPM突变体与内源性NPM寡聚化,抑制p19(Arf)进入2至5 MDa的颗粒,并消除p19(Arf)延缓rRNA加工的能力。

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