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在酵母中,真核生物翻译起始因子4G(eIF4G)对真核生物翻译起始因子4E(eIF4E)与mRNA 5'帽结合的协同调节涉及一个与p20部分共享的位点。

Cooperative modulation by eIF4G of eIF4E-binding to the mRNA 5' cap in yeast involves a site partially shared by p20.

作者信息

Ptushkina M, von der Haar T, Vasilescu S, Frank R, Birkenhäger R, McCarthy J E

机构信息

Posttranscriptional Control Group, Department of Biomolecular Sciences, UMIST, P.O. Box 88, Manchester M60 1QD, UK.

出版信息

EMBO J. 1998 Aug 17;17(16):4798-808. doi: 10.1093/emboj/17.16.4798.

Abstract

Interaction between the mRNA 5'-cap-binding protein eIF4E and the multiadaptor protein eIF4G has been demonstrated in all eukaryotic translation assemblies examined so far. This study uses immunological, genetic and biochemical methods to map the surface amino acids on eIF4E that contribute to eIF4G binding. Cap-analogue chromatography and surface plasmon resonance (SPR) analyses demonstrate that one class of mutations in these surface regions disrupts eIF4E-eIF4G association, and thereby polysome formation and growth. The residues at these positions in wild-type eIF4E mediate positive cooperativity between the binding of eIF4G to eIF4E and the latter's cap-affinity. Moreover, two of the mutations confer temperature sensitivity in eIF4G binding to eIF4E which correlates with the formation of large numbers of inactive ribosome 80S couples in vivo and the loss of cellular protein synthesis activity. The yeast 4E-binding protein p20 is estimated by SPR to have a ten times lower binding affinity than eIF4G for eIF4E. Investigation of a second class of eIF4E mutations reveals that p20 shares only part of eIF4G's binding site on the cap-binding protein. The results presented provide a basis for understanding how cycling of eIF4E and eIF4G occurs in yeast translation and explains how p20 can act as a fine, but not as a coarse, regulator of protein synthesis.

摘要

到目前为止,在所有已检测的真核生物翻译组装体中,均已证实mRNA 5'-帽结合蛋白eIF4E与多接头蛋白eIF4G之间存在相互作用。本研究采用免疫学、遗传学和生物化学方法,对eIF4E上有助于与eIF4G结合的表面氨基酸进行定位。帽类似物色谱法和表面等离子体共振(SPR)分析表明,这些表面区域的一类突变会破坏eIF4E-eIF4G的结合,从而破坏多聚核糖体的形成和生长。野生型eIF4E中这些位置的残基介导了eIF4G与eIF4E结合以及后者帽亲和力之间的正协同作用。此外,其中两个突变在eIF4G与eIF4E的结合中赋予温度敏感性,这与体内大量无活性核糖体80S二聚体的形成以及细胞蛋白质合成活性的丧失相关。通过SPR估计,酵母4E结合蛋白p20对eIF4E的结合亲和力比eIF4G低10倍。对eIF4E第二类突变的研究表明,p20仅共享eIF4G在帽结合蛋白上结合位点的一部分。本文给出的结果为理解酵母翻译过程中eIF4E和eIF4G的循环如何发生提供了基础,并解释了p20如何作为蛋白质合成的精细而非粗略调节因子发挥作用。

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