Karim M M, Hughes J M, Warwicker J, Scheper G C, Proud C G, McCarthy J E
Posttranscriptional Control Group, Department of Biomolecular Sciences, UMIST, P. O. Box 88, Manchester M60 1QD, United Kingdom.
J Biol Chem. 2001 Jun 8;276(23):20750-7. doi: 10.1074/jbc.M011068200. Epub 2001 Mar 2.
Translation initiation is a key point of regulation in eukaryotic gene expression. 4E-binding proteins (4E-BPs) inhibit initiation by blocking the association of eIF4E with eIF4G, two integral components of the mRNA cap-binding complex. Phosphorylation of 4E-BP1 reduces its ability to bind to eIF4E and thereby to compete with eIF4G. A novel combination of biophysical and biochemical tools was used to measure the impact of phosphorylation and acidic side chain substitution at each potentially modulatory site in 4E-BP1. For each individual site, we have analyzed the effects of modification on eIF4E binding using affinity chromatography and surface plasmon resonance analysis, and on the regulatory function of the 4E-BP1 protein using a yeast in vivo model system and a mammalian in vitro translation assay. We find that modifications at the two sites immediately flanking the eIF4E-binding domain, Thr(46) and Ser(65), consistently have the most significant effects, and that phosphorylation of Ser(65) causes the greatest reduction in binding affinity. These results establish a quantitative framework that should contribute to understanding of the molecular interactions underlying 4E-BP1-mediated translational regulation.
翻译起始是真核基因表达调控的一个关键点。4E结合蛋白(4E-BPs)通过阻断eIF4E与eIF4G(mRNA帽结合复合物的两个组成成分)的结合来抑制翻译起始。4E-BP1的磷酸化降低了其与eIF4E结合的能力,从而减少了与eIF4G的竞争。我们使用了生物物理和生化工具的新组合,来测量4E-BP1中每个潜在调节位点的磷酸化和酸性侧链取代的影响。对于每个单独的位点,我们使用亲和色谱和表面等离子体共振分析,分析了修饰对eIF4E结合的影响,并使用酵母体内模型系统和哺乳动物体外翻译测定法,分析了对4E-BP1蛋白调节功能的影响。我们发现,紧邻eIF4E结合结构域的两个位点Thr(46)和Ser(65)的修饰始终具有最显著的影响,并且Ser(65)的磷酸化导致结合亲和力的最大降低。这些结果建立了一个定量框架,有助于理解4E-BP1介导的翻译调控背后的分子相互作用。