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首页> 外文期刊>Journal of Molecular Biology >Systematic mutational analysis of peptide inhibition of the p53-MDM2/MDMX interactions.
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Systematic mutational analysis of peptide inhibition of the p53-MDM2/MDMX interactions.

机译:肽抑制p53-MDM2 / MDMX相互作用的系统突变分析。

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Inhibition of the interaction between the tumor suppressor protein p53 and its negative regulators MDM2 and MDMX is of great interest in cancer biology and drug design. We previously reported a potent duodecimal peptide inhibitor, termed PMI (TSFAEYWNLLSP), of the p53-MDM2 and -MDMX interactions. PMI competes with p53 for MDM2 and MDMX binding at an affinity roughly 2 orders of magnitude higher than that of (17-28)p53 (ETFSDLWKLLPE) of the same length; both peptides adopt nearly identical alpha-helical conformations in the complexes, where the three highlighted hydrophobic residues Phe, Trp, and Leu dominate PMI or (17-28)p53 binding to MDM2 and MDMX. To elucidate the molecular determinants for PMI activity and specificity, we performed a systematic Ala scanning mutational analysis of PMI and (17-28)p53. The binding affinities for MDM2 and MDMX of a total of 35 peptides including 10 truncation analogs were quantified, affording a complete dissection of energetic contributions of individual residues of PMI and (17-28)p53 to MDM2 and MDMX association. Importantly, the N8A mutation turned PMI into the most potent dual-specific antagonist of MDM2 and MDMX reported to date, registering respective K(d) values of 490 pM and 2.4 nM. The co-crystal structure of N8A-PMI-(25-109)MDM2 was determined at 1.95 A, affirming that high-affinity peptide binding to MDM2/MDMX necessitates, in addition to optimized intermolecular interactions, enhanced helix stability or propensity contributed by non-contact residues. The powerful empirical binding data and crystal structures present a unique opportunity for computational studies of peptide inhibition of the p53-MDM2/MDMX interactions.
机译:抑制肿瘤抑制蛋白p53及其负调节剂MDM2和MDMX之间的相互作用在癌症生物学和药物设计中引起了极大的兴趣。我们先前报道了一种有效的十二烷基肽抑制剂,称为pMI(TSFAEYWNLLSP),它与p53-MDM2和-MDMX相互作用。 PMI与p53竞争MDM2和MDMX结合,其亲和力比相同长度的(17-28)p53(ETFSDLWKLLPE)高约2个数量级。两种肽在复合物中均采用几乎相同的α-螺旋构象,其中三个突出的疏水残基Phe,Trp和Leu主导了PMI或(17-28)p53与MDM2和MDMX的结合。为了阐明PMI活性和特异性的分子决定因素,我们对PMI和(17-28)p53进行了系统的Ala扫描突变分析。定量了总共35种肽(包括10个截短类似物)对MDM2和MDMX的结合亲和力,从而完全剖析了PMI和(17-28)p53残基对MDM2和MDMX缔合的能量贡献。重要的是,N8A突变使PMI成为迄今为止报道的最有效的MDM2和MDMX双特异性拮抗剂,分别记录了490 pM和2.4 nM的K(d)值。 N8A-PMI-(25-109)MDM2的共晶体结构在1.95 A下测定,确认与MDM2 / MDMX的高亲和力肽结合不仅需要优化的分子间相互作用,而且还需要增强非分子的螺旋稳定性或倾向性。 -接触残留物。强大的经验结合数据和晶体结构为肽抑制p53-MDM2 / MDMX相互作用的计算研究提供了独特的机会。

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