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肿瘤抑制蛋白Pdcd4与核糖体的关联是由蛋白质-蛋白质和蛋白质-RNA相互作用介导的。

Association of Tumor Suppressor Protein Pdcd4 With Ribosomes Is Mediated by Protein-Protein and Protein-RNA Interactions.

作者信息

Wedeken Lena, Ohnheiser Johanna, Hirschi Benjamin, Wethkamp Nils, Klempnauer Karl-Heinz

机构信息

Institute for Biochemistry, Westfälische-Wilhelms-Universität Münster, Münster, Germany.

出版信息

Genes Cancer. 2010 Mar;1(3):293-301. doi: 10.1177/1947601910364227.

Abstract

The Pdcd4 (programmed cell death gene 4) gene has been implicated as a novel tumor suppressor gene in the development of several types of human cancer. The Pdcd4 protein is believed to act as a translation suppressor of mRNAs containing structured 5' UTRs. Pdcd4 contains 2 copies of so-called MA3 domains that mediate tight interactions with the translation initiation factor eIF4A, resulting in the inhibition of the eIF4A helicase activity. The N-terminal part of Pdcd4, which has been less well characterized, binds RNA in vitro, but as yet, it has not been clear whether RNA binding by Pdcd4 plays a role in vivo. Here, the authors have identified 2 highly conserved clusters of basic amino acid residues that are essential for the RNA binding activity of Pdcd4. They also show that a substantial fraction of Pdcd4 is present, together with small ribosomal subunits, in translation preinitiation complexes. Using mutants that disrupt RNA binding or the Pdcd4-eIF4A interaction, they demonstrate that the ribosomal association of Pdcd4 is dependent on its RNA binding activity as well as on its ability to interact with eIF4A. Their work provides the first direct evidence for an essential role of the Pdcd4 RNA binding activity in vivo and suggests that RNA binding is required for recruiting Pdcd4 to the translation machinery.

摘要

Pdcd4(程序性细胞死亡基因4)基因在多种人类癌症的发生发展过程中被认为是一种新型肿瘤抑制基因。Pdcd4蛋白被认为可作为含有结构化5'非翻译区(UTR)的mRNA的翻译抑制因子。Pdcd4含有2个所谓的MA3结构域,可介导与翻译起始因子eIF4A的紧密相互作用,从而抑制eIF4A解旋酶活性。Pdcd4的N端部分特征尚不明确,它在体外可结合RNA,但目前尚不清楚Pdcd4与RNA的结合在体内是否发挥作用。在此,作者鉴定出2个高度保守的碱性氨基酸残基簇,它们对于Pdcd4的RNA结合活性至关重要。他们还表明,相当一部分Pdcd4与小核糖体亚基一起存在于翻译起始前复合物中。利用破坏RNA结合或Pdcd4-eIF4A相互作用的突变体,他们证明Pdcd4与核糖体的结合依赖于其RNA结合活性以及与eIF4A相互作用的能力。他们的工作为Pdcd4的RNA结合活性在体内的重要作用提供了首个直接证据,并表明RNA结合是将Pdcd4招募到翻译机制所必需的。

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