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具有N7-烷基化帽衍生物的eIF4E的晶体学和质谱表征。

Crystallographic and mass spectrometric characterisation of eIF4E with N7-alkylated cap derivatives.

作者信息

Brown Christopher J, McNae Iain, Fischer Peter M, Walkinshaw Malcolm D

机构信息

Structural Biochemistry, The University of Edinburgh, Michael Swann Building, King's Buildings, Edinburgh, EH9 3JR, Scotland, UK.

出版信息

J Mol Biol. 2007 Sep 7;372(1):7-15. doi: 10.1016/j.jmb.2007.06.033. Epub 2007 Jun 15.

Abstract

Structural complexes of the eukaryotic translation initiation factor 4E (eIF4E) with a series of N(7)-alkylated guanosine derivative mRNA cap analogue structures have been characterised. Mass spectrometry was used to determine apparent gas-phase equilibrium dissociation constants (K(d)) values of 0.15 microM, 13.6 microM, and 55.7 microM for eIF4E with 7-methyl-GTP (m(7)GTP), GTP, and GMP, respectively. For tight and specific binding to the eIF4E mononucleotide binding site, there seems to be a clear requirement for guanosine derivatives to possess both the delocalised positive charge of the N(7)-methylated guanine system and at least one phosphate group. We show that the N(7)-benzylated monophosphates 7-benzyl-GMP (Bn(7)GMP) and 7-(p-fluorobenzyl)-GMP (FBn(7)GMP) bind eIF4E substantially more tightly than non-N(7)-alkylated guanosine derivatives (K(d) values of 7.0 microM and 2.0 microM, respectively). The eIF4E complex crystal structures with Bn(7)GMP and FBn(7)GMP show that additional favourable contacts of the benzyl groups with eIF4E contribute binding energy that compensates for loss of the beta and gamma-phosphates. The N(7)-benzyl groups pack into a hydrophobic pocket behind the two tryptophan side-chains that are involved in the cation-pi stacking interaction between the cap and the eIF4E mononucleotide binding site. This pocket is formed by an induced fit in which one of the tryptophan residues involved in cap binding flips through 180 degrees relative to structures with N(7)-methylated cap derivatives. This and other observations made here will be useful in the design of new families of eIF4E inhibitors, which may have potential therapeutic applications in cancer.

摘要

真核生物翻译起始因子4E(eIF4E)与一系列N(7)-烷基化鸟苷衍生物mRNA帽类似物结构的结构复合物已得到表征。质谱法用于测定eIF4E与7-甲基-GTP(m(7)GTP)、GTP和GMP的表观气相平衡解离常数(K(d))值,分别为0.15 microM、13.6 microM和55.7 microM。对于与eIF4E单核苷酸结合位点的紧密且特异性结合,鸟苷衍生物似乎明显需要同时具备N(7)-甲基化鸟嘌呤系统的离域正电荷和至少一个磷酸基团。我们表明,N(7)-苄基单磷酸酯7-苄基-GMP(Bn(7)GMP)和7-(对氟苄基)-GMP(FBn(7)GMP)与eIF4E的结合比非N(7)-烷基化鸟苷衍生物紧密得多(K(d)值分别为7.0 microM和2.0 microM)。eIF4E与Bn(7)GMP和FBn(7)GMP的复合物晶体结构表明,苄基与eIF4E的额外有利接触贡献了结合能,补偿了β和γ磷酸基团的损失。N(7)-苄基基团堆积到两个色氨酸侧链后面的疏水口袋中,这两个色氨酸侧链参与帽与eIF4E单核苷酸结合位点之间的阳离子-π堆积相互作用。这个口袋是通过诱导契合形成的,其中参与帽结合的一个色氨酸残基相对于具有N(7)-甲基化帽衍生物的结构翻转了180度。本文的这一观察结果和其他观察结果将有助于设计新的eIF4E抑制剂家族,这些抑制剂可能在癌症治疗中具有潜在应用。

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