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Repressor binding to a dorsal regulatory site traps human eIF4E in a high cap-affinity state.

机译:阻遏物与背部调节位点的结合将人类eIF4E捕获在高帽亲和力状态。

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摘要

Eukaryotic translation initiation involves recognition of the 5' end of cellular mRNA by the cap-binding complex known as eukaryotic initiation factor 4F (eIF4F). Initiation is a key point of regulation in gene expression in response to mechanisms mediated by signal transduction pathways. We have investigated the molecular interactions underlying inhibition of human eIF4E function by regulatable repressors called 4E-binding proteins (4E-BPs). Two essential components of eIF4F are the cap-binding protein eIF4E, and eIF4G, a multi-functional protein that binds both eIF4E and other essential eIFs. We show that the 4E-BPs 1 and 2 block the interaction between eIF4G and eIF4E by competing for binding to a dorsal site on eIF4E. Remarkably, binding of the 4E-BPs at this dorsal site enhances cap-binding via the ventral cap-binding slot, thus trapping eIF4E in inactive complexes with high affinity for capped mRNA. The binding contacts and affinities for the interactions between 4E-BP1/2 and eIF4E are distinct (estimated K(d) values of 10(-8) and 3x10(-9) for 4E-BP1 and 2, respectively), and the differences in these properties are determined by three amino acids within an otherwise conserved motif. These data provide a quantitative framework for a new molecular model of translational regulation.
机译:真核翻译起始涉及被称为真核起始因子4F(eIF4F)的帽结合复合物识别细胞mRNA的5'端。响应信号转导途径介导的机制,起始是调节基因表达的关键点。我们已经研究了被称为4E结合蛋白(4E-BPs)的可调节阻遏物抑制人类eIF4E功能的分子相互作用。 eIF4F的两个基本组成部分是帽结合蛋白eIF4E和eIF4G,eIF4G是一种结合了eIF4E和其他基本eIF的多功能蛋白。我们显示4E-BPs 1和2通过竞争与eIF4E的背侧位点的结合来阻止eIF4G和eIF4E之间的相互作用。值得注意的是,在该背侧位点的4E-BPs结合通过腹侧帽结合槽增强了帽结合,从而将eIF4E捕获在对帽状mRNA具有高亲和力的非活性复合物中。 4E-BP1 / 2和eIF4E之间相互作用的结合接触和亲和力是不同的(4E-BP1和2的估计K(d)值分别为10(-8)和3x10(-9)),并且差异这些性质中的“氨基酸”由保守的基序中的三个氨基酸决定。这些数据为翻译调控的新分子模型提供了定量框架。

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