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首页> 外文期刊>Biochemistry >Poly(A)-Binding Protein Increases the Binding Affinity and Kinetic Rates of Interaction of Viral Protein Linked to Genome with Translation Initiation Factors eIFiso4F and eIFiso4F·4B Complex
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Poly(A)-Binding Protein Increases the Binding Affinity and Kinetic Rates of Interaction of Viral Protein Linked to Genome with Translation Initiation Factors eIFiso4F and eIFiso4F·4B Complex

机译:聚(A)结合蛋白提高了与翻译起始因子eIFiso4F和eIFiso4F·4B复合体相关的病毒蛋白与基因组的相互作用的结合亲和力和动力学速率。

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VPg of turnip mosaic virus (TuMV) was previously shown to interact with translation initiation factor eIFiso4F and play an important role in mRNA translation [Khan, M. A., et al. (2008) J. Biol. Chem. 283, 1340? 1349]. VPg competed with cap analogue for eIFiso4F binding and competitively inhibited cap-dependent translation and enhanced capindependent translation to give viral RNA a significant competitive advantage. To gain further insight into the cap-independent process of initiation of protein synthesis, we examined the effect of PABP and/or eIF4B on the equilibrium and kinetics of binding of VPg to eIFiso4F. Equilibrium data showed the addition of PABP and/or eIF4B to eIFiso4F increased the binding affinity for VPg (K_d = 24.3 ± 1.6 nM) as compared to that with eIFiso4F alone (K_d = 81.3 ± 0.2.4 nM). Thermodynamic parameters showed that binding of VPg to eIFiso4F was enthalpy-driven and entropy-favorable with the addition of PABP and/or eIF4B. PABP and eIF4B decreased the entropic contribution by 67% for binding of VPg to eIFiso4F. The decrease in entropy involved in the formation of the eIFiso4F·4B·PABP-VPg complex suggested weakened hydrophobic interactions for complex formation and an overall conformational change. The kinetic studies of eIFiso4F with VPg in the presence of PABP and eIF4B show 3-fold faster association (k_2 = 182 ± 9.0 s~(-1)) compared to that with eIFiso4F alone (k_2 = 69.0 ± 1.5 s~(-1)) . The dissociation rate was 3-fold slower (k_(-2) = 6.5 ± 0.43 s~(-1)) for eIFiso4F with VPg in the presence of PABP and eIF4B (k~(-2) = 19.0 ± 0.9 s~(-1)). The addition of PABP and eIF4B decreased the activation energy of eIFiso4F with VPg from 81.0 ± 3.0 to 44.0 ± 2.4 kJ/mol. This suggests that the presence of both proteins leads to a rapid, stable complex, which serves to sequester initiation factors.
机译:先前显示芜菁花叶病毒(TuMV)的VPg与翻译起始因子eIFiso4F相互作用并在mRNA翻译中起重要作用[Khan,M. A.,et al。 (2008)J.Biol。化学283、1340? 1349]。 VPg与cap类似物竞争eIFiso4F结合,竞争性抑制cap-依赖性翻译和增强的capin非依赖性翻译,从而使病毒RNA具有明显的竞争优势。为了进一步了解蛋白质合成起始的不依赖于帽的过程,我们检查了PABP和/或eIF4B对VPg与eIFiso4F结合的平衡和动力学的影响。平衡数据显示,与单独使用eIFiso4F(K_d = 81.3±0.2.4 nM)相比,向eIFiso4F中添加PABP和/或eIF4B增强了对VPg的结合亲和力(K_d = 24.3±1.6 nM)。热力学参数表明,VPg与eIFiso4F的结合是焓驱动的,并且在添加PABP和/或eIF4B时对熵有利。 PABP和eIF4B使VPg与eIFiso4F结合的熵作用降低了67%。 eIFiso4F·4B·PABP-VPg复合物形成过程中熵的降低表明复合物形成过程中疏水相互作用的减弱和整体构象变化。在PABP和eIF4B存在下,eIFiso4F与VPg的动力学研究表明,与单独使用eIFiso4F(k_2 = 69.0±1.5 s〜(-1)相比,eIFiso4F与VPg的缔合(k_2 = 182±9.0 s〜(-1))快3倍。 ))。在PABP和eIF4B存在的情况下,含VPg的eIFiso4F的解离速率慢3倍(k _(-2)= 6.5±0.43 s〜(-1))(k〜(-2)= 19.0±0.9 s〜( -1))。 PABP和eIF4B的添加将VPg对eIFiso4F的活化能从81.0±3.0降低至44.0±2.4 kJ / mol。这表明两种蛋白质的存在都会导致快速,稳定的复合物,从而螯合起始因子。

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