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首页> 外文期刊>Molecular and Cellular Biology >The Transformation Suppressor Pdcd4 Is a Novel Eukaryotic Translation Initiation Factor 4A Binding Protein That Inhibits Translation
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The Transformation Suppressor Pdcd4 Is a Novel Eukaryotic Translation Initiation Factor 4A Binding Protein That Inhibits Translation

机译:转化抑制子Pdcd4是抑制翻译的新型真核翻译起始因子4A结合蛋白。

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Pdcd4 is a novel transformation suppressor that inhibits tumor promoter-induced neoplastic transformation and the activation of AP-1-dependent transcription required for transformation. A yeast two-hybrid analysis revealed that Pdcd4 associates with the eukaryotic translation initiation factors eIF4AI and eIF4AII. Immunofluorescent confocal microscopy showed that Pdcd4 colocalizes with eIF4A in the cytoplasm. eIF4A is an ATP-dependent RNA helicase needed to unwind 5′ mRNA secondary structure. Recombinant Pdcd4 specifically inhibited the helicase activity of eIF4A and eIF4F. In vivo translation assays showed that Pdcd4 inhibited cap-dependent but not internal ribosome entry site (IRES)-dependent translation. In contrast, Pdcd4D418A, a mutant inactivated for binding to eIF4A, failed to inhibit cap-dependent or IRES-dependent translation or AP-1 transactivation. Recombinant Pdcd4 prevented eIF4A from binding to the C-terminal region of eIF4G (amino acids 1040 to 1560) but not to the middle region of eIF4G(amino acids 635 to 1039). In addition, both Pdcd4 and Pdcd4D418A bound to the middle region of eIF4G. The mechanism by which Pdcd4 inhibits translation thus appears to involve inhibition of eIF4A helicase, interference with eIF4A association-dissociation from eIF4G, and inhibition of eIF4A binding to the C-terminal domain of eIF4G. Pdcd4 binding to eIF4A is linked to its transformation-suppressing activity, as Pdcd4-eIF4A binding and consequent inhibition of translation are required for Pdcd4 transrepression of AP-1.
机译:Pdcd4是一种新型的转化抑制剂,可抑制肿瘤启动子诱导的肿瘤转化和转化所需的AP-1依赖性转录的激活。酵母双杂交分析表明,Pdcd4与真核翻译起始因子eIF4AI和eIF4AII相关。免疫荧光共聚焦显微镜显示,Pdcd4与eIF4A在细胞质中共定位。 eIF4A是解开5'mRNA二级结构所需的ATP依赖性RNA解旋酶。重组Pdcd4特异性抑制eIF4A和eIF4F的解旋酶活性。体内翻译试验显示Pdcd4抑制cap依赖性,但不抑制内部核糖体进入位点(IRES)依赖性翻译。相比之下,Pdcd4 D418A (一种因与eIF4A结合而失活的突变体)未能抑制cap依赖性或IRES依赖性翻译或AP-1反式激活。重组Pdcd4阻止eIF4A结合到eIF4G的C端区域(氨基酸1040至1560),但不结合到eIF4G的中间区域(氨基酸635至1039)。此外,Pdcd4和Pdcd4 D418A 都绑定到eIF4G的中间区域。因此,Pdcd4抑制翻译的机制似乎包括抑制eIF4A解旋酶,干扰eIF4A与eIF4G的结合-解离,以及抑制eIF4A与eIF4G的C末端结构域结合。 Pdcd4与eIF4A的结合与其抑制转化的活性有关,因为Pdcd4-eIF4A的结合和对翻译的抑制是AP-1的Pdcd4反式抑制所必需的。

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