Hernández-Alvarez Lilian, Oliveira Antonio B, Hernández-González Jorge Enrique, Chahine Jorge, Pascutti Pedro Geraldo, de Araujo Alexandre Suman, de Souza Fátima Pereira
Department of Physics, Instituto de Biociências, Letras e Ciências Exatas, Universidade Estadual Paulista Julio de Mesquita Filho, São José do Rio Preto, São Paulo, Brazil.
Center for Theoretical Biological Physics, Rice University, Huston, TX, United States.
Comput Struct Biotechnol J. 2021 Apr 5;19:2027-2044. doi: 10.1016/j.csbj.2021.03.036. eCollection 2021.
During their life cycle, parasites display a fine-tuned regulation of the mRNA translation through the differential expression of isoforms of eukaryotic translation initiation factor 4E (LeishIF4Es). The interaction between allosteric modulators such as 4E-interacting proteins (4E-IPs) and LeishIF4E affects the affinity of this initiation factor for the mRNA cap. Here, several computational approaches were employed to elucidate the molecular bases of the previously-reported allosteric modulation in exerted by 4E-IP1 (Lm4E-IP1) on eukaryotic translation initiation factor 4E 1 (LmIF4E-1). Molecular dynamics (MD) simulations and accurate binding free energy calculations (Δ ) were combined with network-based modeling of residue-residue correlations. We also describe the differences in internal motions of LmIF4E-1 apo form, cap-bound, and Lm4E-IP1-bound systems. Through community network calculations, the differences in the allosteric pathways of allosterically-inhibited and active forms of LmIF4E-1 were revealed. The Δ values show significant differences between the active and inhibited systems, which are in agreement with the available experimental data. Our study thoroughly describes the dynamical perturbations of LmIF4E-1 cap-binding site triggered by Lm4E-IP1. These findings are not only essential for the understanding of a critical process of trypanosomatids' gene expression but also for gaining insight into the allostery of eukaryotic IF4Es, which could be useful for structure-based design of drugs against this protein family.
在其生命周期中,寄生虫通过真核翻译起始因子4E(LeishIF4Es)亚型的差异表达,对mRNA翻译进行精细调节。变构调节剂(如4E相互作用蛋白,4E-IPs)与LeishIF4E之间的相互作用会影响该起始因子对mRNA帽的亲和力。在此,我们采用了多种计算方法来阐明先前报道的4E-IP1(Lm4E-IP1)对真核翻译起始因子4E 1(LmIF4E-1)施加的变构调节的分子基础。分子动力学(MD)模拟和精确的结合自由能计算(Δ )与基于网络的残基-残基相关性建模相结合。我们还描述了LmIF4E-1的无配体形式、帽结合形式和Lm4E-IP1结合形式系统内部运动的差异。通过群落网络计算,揭示了LmIF4E-1变构抑制形式和活性形式变构途径的差异。Δ 值显示活性系统和抑制系统之间存在显著差异,这与现有的实验数据一致。我们的研究全面描述了Lm4E-IP1触发的LmIF4E-1帽结合位点的动态扰动。这些发现不仅对于理解锥虫基因表达的关键过程至关重要,而且对于深入了解真核IF4Es的变构作用也很重要,这可能有助于基于结构设计针对该蛋白家族的药物。