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翻译起始因子 eIFiso4E 的磷酸化通过增强与马铃薯 Y 病毒 VPg 的结合促进翻译。

Phosphorylation of translation initiation factor eIFiso4E promotes translation through enhanced binding to potyvirus VPg.

机构信息

Department of Chemistry & Biochemistry, Hunter College of the City University of New York, 695 Park Ave, New York, USA.

Department of Life Sciences, College of Science and General Studies, Alfaisal University, Takhasusi Street, P.O. Box-50927, Riyadh, Saudi Arabia.

出版信息

J Biochem. 2019 Feb 1;165(2):167-176. doi: 10.1093/jb/mvy091.

Abstract

Interactions of phosphorylated eIFiso4E binding to VPg as a function of temperature and ionic strength were assessed employing fluorescence spectroscopic. Phosphorylation increased the binding affinity ∼3.5-fold between VPg and eIFiso4E under equilibrium conditions. Binding affinity of VPg for eIFiso4Ep correlates with the ability to enhance in vitro protein synthesis. Addition of VPg and eIFiso4Ep together to Dep WGE enhances the translation for both uncapped and capped mRNA. However, capped mRNA translation was inhibited with addition of eIFiso4Ep alone in dep WGE, suggesting that phosphorylation prevents the cap binding and favours the VPg binding to promotes translation. Temperature dependence showed that the phosphorylated form of the eIFiso4E is preferred for complex formation. A van't Hoff analysis reveals that eIFiso4Ep binding to VPg was enthalpy driven (ΔH = -43.9 ± 0.3 kJ.mol-1) and entropy-opposed (ΔS = -4.3 ± 0.1 J.mol-1K-1). Phosphorylation increased the enthalpic contributions ∼33% for eIFiso4Ep-VPg complex. The thermodynamic values and ionic strength dependence of binding data suggesting that phosphorylation increased hydrogen-bonding and decreased hydrophobic interactions, which leads to more stable complex formation and favour efficient viral translation. Overall these data correlate well with the observed translational data and provide more detailed information on the translational strategy of potyviruses.

摘要

采用荧光光谱法评估了磷酸化 eIFiso4E 与 VPg 相互作用的温度和离子强度依赖性。在平衡条件下,磷酸化将 VPg 和 eIFiso4E 之间的结合亲和力增加了约 3.5 倍。VPg 与 eIFiso4Ep 的结合亲和力与体外蛋白质合成的增强能力相关。在 Dep WGE 中同时添加 VPg 和 eIFiso4Ep 可增强未加帽和加帽 mRNA 的翻译。然而,在 Dep WGE 中单独添加 eIFiso4Ep 会抑制加帽 mRNA 的翻译,这表明磷酸化可防止帽结合并有利于 VPg 结合以促进翻译。温度依赖性表明磷酸化形式的 eIFiso4E 更有利于形成复合物。范特霍夫分析表明,eIFiso4Ep 与 VPg 的结合是焓驱动的(ΔH = -43.9 ± 0.3 kJ.mol-1),并受到熵的反对(ΔS = -4.3 ± 0.1 J.mol-1K-1)。磷酸化使 eIFiso4Ep-VPg 复合物的焓贡献增加了约 33%。结合数据的热力学值和离子强度依赖性表明,磷酸化增加了氢键并减少了疏水相互作用,从而导致更稳定的复合物形成并有利于有效的病毒翻译。总的来说,这些数据与观察到的翻译数据很好地相关,并提供了关于 potyviruses 翻译策略的更详细信息。

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