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A combinatorial code for CPE-mediated translational control

机译:CPE介导的翻译控制的组合代码

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Cytoplasmic polyadenylation plays a key role in the translational control of mRNAs driving biological processes such as gametogenesis, cell-cycle progression, and synaptic plasticity. What determines the distinct time of polyadenylation and extent of translational control of a given mRNA, however, is poorly understood. The polyadenylation-regulated translation is controlled by the cytoplasmic polyadenylation element (CPE) and its binding protein, CPEB, which can assemble both translational repression or activation complexes. Using a combination of mutagenesis and experimental validation of genome-wide computational predictions, we show that the number and relative position of two elements, the CPE and the Pumilio-binding element, with respect to the polyadenylation signal define a combinatorial code that determines whether an mRNA will be translationally repressed by CPEB, as well as the extent and time of cytoplasmic polyadenylation-dependent translational activation.
机译:细胞质多腺苷化在MRNAS驱动生物过程如配子发生,细胞周期进展和突触塑性的翻译控制中起着关键作用。 然而,决定了给定mRNA对给定mRNA的翻译控制的不同时间是较差的。 聚腺苷酸调节调节的翻译由细胞质多腺苷酸化元素(CPE)和其结合蛋白,CPEB控制,CPEB可以组装转化抑制或活化复合物。 使用诱变和实验验证的基因组宽的计算预测的组合,我们表明两个元件,CPE和大型粘合元件的数量和相对位置相对于多腺苷酸化信号定义了组合代码,该组合代码决定了吗? MRNA将被CPEB翻译抑制,以及细胞质多腺苷酸化依赖性平移活化的程度和时间。

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