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Translational Control of Cell Fate: Availability of Phosphorylation Sites on Translational Repressor 4E-BP1 Governs Its Proapoptotic Potency

机译:细胞命运的翻译控制:翻译阻遏物4E-BP1上的磷酸化位点的可用性控制其促凋亡能力。

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摘要

Translational control has been recently added to well-recognized genomic, transcriptional, and posttranslational mechanisms regulating apoptosis. We previously found that overexpressed eukaryotic initiation factor 4E (eIF4E) rescues cells from apoptosis, while ectopic expression of wild-type eIF4E-binding protein 1 (4E-BP1), the most abundant member of the 4E-BP family of eIF4E repressor proteins, activates apoptosis—but only in transformed cells. To test the possibility that nontransformed cells require less cap-dependent translation to suppress apoptosis than do their transformed counterparts, we intensified the level of translational repression in nontransformed fibroblasts. Here, we show that inhibition of 4E-BP1 phosphorylation by rapamycin triggers apoptosis in cells ectopically expressing wild-type 4E-BP1 and that expression of 4E-BP1 phosphorylation site mutants potently activates apoptosis in a phosphorylation site-specific manner. In general, proapoptotic potency paralleled repression of cap-dependent translation. However, this relationship was not a simple monotone. As repression of cap-dependent translation intensified, apoptosis increased to a maximum value. Further repression resulted in less apoptosis—a state associated with activation of translation through internal ribosomal entry sites. These findings show: that phosphorylation events govern the proapoptotic potency of 4E-BP1, that 4E-BP1 is proapoptotic in normal as well as transformed fibroblasts, and that malignant transformation is associated with a higher requirement for cap-dependent translation to inhibit apoptosis. Our results suggest that 4E-BP1-mediated control of apoptosis occurs through qualitative rather than quantitative changes in protein synthesis, mediated by a dynamic interplay between cap-dependent and cap-independent processes.
机译:翻译控制最近已被添加到公认的调节细胞凋亡的基因组,转录和翻译后机制中。我们先前发现,过度表达的真核起始因子4E(eIF4E)可以使细胞免于凋亡,而异位表达野生型eIF4E结合蛋白1(4E-BP1),这是eIF4E阻遏蛋白4E-BP家族中含量最高的成员,激活细胞凋亡,但仅在转化细胞中激活。为了测试未转化的细胞比已转化的对应物需要更少的帽依赖性翻译来抑制细胞凋亡的可能性,我们增强了未转化的成纤维细胞的翻译抑制水平。在这里,我们显示雷帕霉素对4E-BP1磷酸化的抑制会触发异位表达野生型4E-BP1的细胞中的凋亡,并且4E-BP1磷酸化位点突变体的表达以磷酸化位点特异性方式有效激活细胞凋亡。通常,促凋亡能力与抑制帽依赖性翻译平行。但是,这种关系不是简单的单调。随着盖帽依赖性翻译的抑制增强,凋亡增加至最大值。进一步的抑制导致更少的凋亡-一种与通过内部核糖体进入位点激活翻译相关的状态。这些发现表明:磷酸化事件控制着4E-BP1的促凋亡能力,4E-BP1在正常的和转化的成纤维细胞中均是促凋亡的,并且恶性转化与帽依赖性翻译抑制凋亡的更高要求有关。我们的结果表明,由4E-BP1介导的细胞凋亡控制是通过蛋白质合成中的定性而不是定量变化发生的,而这种变化是由帽依赖性和帽依赖性过程之间的动态相互作用介导的。

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