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鉴定和功能的第二个 eIF4E-结合区在 N 端结构域的 eIF4G:与 eIF4E 结合蛋白的比较。

Identification and function of the second eIF4E-binding region in N-terminal domain of eIF4G: comparison with eIF4E-binding protein.

机构信息

Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences, 4-20-1 Nasahara, Takatsuki, Osaka 569-1094, Japan.

出版信息

Biochem Biophys Res Commun. 2011 Oct 28;414(3):462-7. doi: 10.1016/j.bbrc.2011.09.084. Epub 2011 Sep 21.

Abstract

The eukaryotic initiation factor 4E (eIF4E) serves as a master switch that controls mRNA translation through the promotive binding to eIF4G and the regulative binding with the endogenous inhibitor 4E-BP. Although the bindings of eIF4G and 4E-BP to eIF4E proceed through the common eIF4E recognition Y(X)(4)Lφ motif (X: variable, φ: hydrophobic) (first binding site), the relationship between their eIF4E binding mode and the functional difference is hardly known. Recently, we have clarified the existence and function of the second eIF4E binding site in 4E-BP. Surface plasmon resonance (SPR) analysis based on the sequential comparison between 4E-BP and eIF4GI clarified that eIF4G has the second binding site at the periphery of the (597)SDVVL(601) sequence and that it plays an auxiliary but indispensable function in stabilizing the binding of the first binding sequence (572)YDREFLL(578). The kinetic parameters of the interactions of the eIF4GI and 4E-BP2 fragment peptides with eIF4E showed that the association (ka) and dissociation (kd) rates of the former peptide are about three and two orders of magnitude lower than those of the latter peptide, respectively. This means that eIF4G has a potent resistive property for release from eIF4E, although its rate of binding to eIF4E is not as high as that of 4E-BP, that is, 4E-BP is apt to bind to and be released from eIF4E, as compared with eIF4G. Isothermal titration calorimetry (ITC) showed the opposite behavior between the second binding sites of eIF4GI and 4E-BP for the interaction with eIF4E. This clearly indicates the importance of the second binding region for the difference in function between eIF4G and 4E-BP for eIF4E translation.

摘要

真核起始因子 4E(eIF4E)作为一个主开关,通过促进与 eIF4G 的结合和调节与内源性抑制剂 4E-BP 的结合来控制 mRNA 翻译。虽然 eIF4G 和 4E-BP 与 eIF4E 的结合都通过共同的 eIF4E 识别 Y(X)(4)Lφ 基序(X:可变,φ:疏水)(第一个结合位点)进行,但它们的 eIF4E 结合模式与功能差异之间的关系知之甚少。最近,我们已经证实了 4E-BP 中第二个 eIF4E 结合位点的存在和功能。基于对 4E-BP 和 eIF4GI 进行连续比较的表面等离子体共振(SPR)分析,明确了 eIF4G 在(597)SDVVL(601)序列的外围具有第二个结合位点,并且在稳定第一个结合序列(572)YDREFLL(578)的结合中发挥辅助但不可或缺的作用。eIF4GI 和 4E-BP2 片段肽与 eIF4E 的相互作用的动力学参数表明,前者肽的缔合(ka)和解离(kd)速率分别比后者肽低约三个和两个数量级。这意味着 eIF4G 具有从 eIF4E 释放的强大抗性,尽管其与 eIF4E 的结合速率不如 4E-BP 高,即与 eIF4G 相比,4E-BP 更易于与 eIF4E 结合和释放。等温滴定量热法(ITC)显示了 eIF4GI 和 4E-BP 的第二个结合位点与 eIF4E 相互作用的相反行为。这清楚地表明了第二个结合区域对于 eIF4G 和 4E-BP 对 eIF4E 翻译的功能差异的重要性。

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