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首页> 外文期刊>Journal of Molecular Biology >Biophysical Studies of eIF4E Cap-binding Protein: Recognition of mRNA 5' Cap Structure and Synthetic Fragments of eIF4G and 4E-BP1 Proteins.
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Biophysical Studies of eIF4E Cap-binding Protein: Recognition of mRNA 5' Cap Structure and Synthetic Fragments of eIF4G and 4E-BP1 Proteins.

机译:eIF4E帽结合蛋白的生物物理研究:识别eIF4G和4E-BP1蛋白的mRNA 5'帽结构和合成片段。

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摘要

mRNA 5'-cap recognition by the eukaryotic translation initiation factor eIF4E has been exhaustively characterized with the aid of a novel fluorometric, time-synchronized titration method, and X-ray crystallography. The association constant values of recombinant eIF4E for 20 different cap analogues cover six orders of magnitude; with the highest affinity observed for m(7)GTP ( approximately 1.1x10(8) M(-1)). The affinity of the cap analogues for eIF4E correlates with their ability to inhibit in vitro translation. The association constants yield contributions of non-covalent interactions involving single structural elements of the cap to the free energy of binding, giving a reliable starting point to rational drug design. The free energy of 7-methylguanine stacking and hydrogen bonding (-4.9 kcal/mol) is separate from the energies of phosphate chain interactions (-3.0, -1.9, -0.9 kcal/mol for alpha, beta, gamma phosphates, respectively), supporting two-step mechanism of the binding. The negatively charged phosphate groups of the cap act as a molecular anchor, enabling further formation of the intermolecular contacts within the cap-binding slot. Stabilization of the stacked Trp102/m(7)G/Trp56 configuration is a precondition to form three hydrogen bonds with Glu103 and Trp102. Electrostaticly steered eIF4E-cap association is accompanied by additional hydration of the complex by approximately 65 water molecules, and by ionic equilibria shift. Temperature dependence reveals the enthalpy-driven and entropy-opposed character of the m(7)GTP-eIF4E binding, which results from dominant charge-related interactions (DeltaH degrees =-17.8 kcal/mol, DeltaS degrees =-23.6 cal/mol K). For recruitment of synthetic eIF4GI, eIF4GII, and 4E-BP1 peptides to eIF4E, all the association constants were approximately 10(7) M(-1), in decreasing order: eIF4GI>4E-BP1>eIF4GII approximately 4E-BP1(P-Ser65) approximately 4E-BP1(P-Ser65/Thr70). Phosphorylation of 4E-BP1 at Ser65 and Thr70 is insufficient to prevent binding to eIF4E. Enhancement of the eIF4E affinity for cap occurs after binding to eIF4G peptides. (c) 2002 Elsevier Science Ltd.
机译:借助于新型荧光法,时间同步滴定法和X射线晶体学,已全面表征了真核翻译起始因子eIF4E对mRNA 5'-帽的识别。重组eIF4E对20种不同帽类似物的缔合常数值涵盖了六个数量级。对m(7)GTP具有最高的亲和力(约1.1x10(8)M(-1))。帽类似物对eIF4E的亲和力与其抑制体外翻译的能力有关。缔合常数产生涉及帽的单个结构元素的非共价相互作用对结合自由能的贡献,为合理的药物设计提供了可靠的起点。 7-甲基鸟嘌呤堆积和氢键的自由能(-4.9 kcal / mol)与磷酸盐链相互作用的能量(对于α,β,γ磷酸分别为-3.0,-1.9,-0.9 kcal / mol)是分开的,支持绑定的两步机制。帽的带负电荷的磷酸基团起分子锚的作用,使得能够在帽结合槽内进一步形成分子间接触。堆叠Trp102 / m(7)G / Trp56构型的稳定是与Glu103和Trp102形成三个氢键的前提。静电控制的eIF4E-cap缔合伴随着复合物被约65个水分子额外水合以及离子平衡移动。温度依赖性揭示了m(7)GTP-eIF4E结合的焓驱动和熵相反的特性,这是由主要的电荷相关相互作用引起的(DeltaH度= -17.8 kcal / mol,DeltaS度= -23.6 cal / mol K )。为了将合成的eIF4GI,eIF4GII和4E-BP1肽募集到eIF4E,所有缔合常数约为10(7)M(-1),降序顺序为:eIF4GI> 4E-BP1> eIF4GII约4E-BP1(P- Ser65)约4E-BP1(P-Ser65 / Thr70)。在Ser65和Thr70处4E-BP1的磷酸化不足以防止与eIF4E结合。在与eIF4G肽结合后,eIF4E对帽的亲和力增强。 (c)2002爱思唯尔科学有限公司。

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