首页> 外文期刊>Journal of Medicinal Chemistry >Structural Basis for the Binding of Didemnins to Human Elongation Factor eEF1A and Rationale for the Potent Antitumor Activity of These Marine Natural Products.
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Structural Basis for the Binding of Didemnins to Human Elongation Factor eEF1A and Rationale for the Potent Antitumor Activity of These Marine Natural Products.

机译:豆蔻精与人延伸因子eEF1A结合的结构基础和这些海洋天然产物有效抗肿瘤活性的原理。

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Didemnins and tamandarins are closely related marine natural products with potent inhibitory effects on protein synthesis and cell viability. On the basis of available biochemical and structural evidence and results from molecular dynamics simulations, a model is proposed that accounts for the strong and selective binding of these compounds to human elongation factor eEF1A in the presence of GTP. We suggest that the p-methoxyphenyl ring of these cyclic depsipeptides is inserted into the same pocket in eEF1A that normally lodges either the 3' terminal adenine of aminoacylated tRNA, as inferred from two prokaryotic EF-Tu.GTP.tRNA complexes, or the aromatic side chain of Phe/Tyr-163 from the nucleotide exchange factor eEF1Balpha, as observed in several X-ray crystal structures of a yeast eEF1A:eEF1Balpha complex. This pocket, which has a strong hydrophobic character, is formed by two protruding loops on the surface of eEF1A domain 2. Further stabilization of the bound depsipeptide is brought about by additional crucial interactions involving eEF1A domain 1 in such a way that the molecule fits snugly at the interface between these two domains. In the GDP-bound form of eEF1A, this binding site exists only as two separate halves, which accounts for the much greater affinity of didemnins for the GTP-bound form of this elongation factor. This binding mode is entirely different from those seen in the complexes of the homologous prokaryotic EF-Tu with kirromycin-type antibiotics or the cyclic thiazolyl peptide antibiotic GE2270A. Interestingly, the set of interactions used by didemnins to bind to eEF1A is also distinct from that used by eEF1Balpha or eEF1Bbeta, thus establishing a competition for binding to a common site that goes beyond simple molecular mimicry. The model presented here is consistent with both available biochemical evidence and known structure-activity relationships for these two classes of natural compounds and synthetic analogues and provides fertile ground for future research.
机译:豆蔻精和丹精是密切相关的海洋天然产物,对蛋白质合成和细胞活力具有有效的抑制作用。根据现有的生物化学和结构证据以及分子动力学模拟的结果,提出了一个模型,该模型解释了在GTP存在下这些化合物与人延伸因子eEF1A的强而选择性的结合。我们建议将这些环状二肽的对甲氧基苯基环插入eEF1A的同一口袋中,该口袋通常可从两个原核EF-Tu.GTP.tRNA复合体推断出的氨基酰化tRNA的3'末端腺嘌呤。在酵母eEF1A:eEF1Balpha复合物的几个X射线晶体结构中观察到,来自核苷酸交换因子eEF1Balpha的Phe / Tyr-163侧链。此口袋具有很强的疏水性,是由eEF1A结构域2的表面上的两个突出环形成的。结合的depsipepteptide的进一步稳定是通过涉及eEF1A结构域1的其他关键相互作用实现的,从而使分子紧密贴合在这两个域之间的接口处。在eEF1A的GDP结合形式中,此结合位点仅以两个独立的一半存在,这说明二氢肌酐对这种伸长因子的GTP结合形式具有更大的亲和力。这种结合方式完全不同于同源原核EF-Tu与奇异霉素类抗生素或环状噻唑基肽抗生素GE2270A的复合物。有趣的是,双氢精蛋白用于结合eEF1A的相互作用的集合也不同于eEF1Balpha或eEF1Bbeta所使用的相互作用的集合,从而建立了对超越简单分子模拟的共同位点的竞争。此处介绍的模型与这两类天然化合物和合成类似物的现有生物化学证据和已知的构效关系都相符,并为将来的研究提供了沃土。

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