Khan Mateen A, Miyoshi Hiroshi, Ray Sibnath, Natsuaki Tomohide, Suehiro Noriko, Goss Dixie J
Department of Chemistry, Hunter College and the Graduate Center of the City University of New York, New York, New York 10021, USA.
J Biol Chem. 2006 Sep 22;281(38):28002-10. doi: 10.1074/jbc.M605479200. Epub 2006 Jul 31.
The interaction between VPg of turnip mosaic virus and wheat germ eukaryotic translation initiation factors eIFiso4E and eIFiso4F (the complex of eIFiso4E and eIFiso4G) were measured and compared. The fluorescence quenching data showed the presence of one binding site on eIFiso4E for VPg. Scatchard analysis revealed the binding affinity (K(a)) and average binding sites (n) for VPg were (8.51 +/- 0.21) x 10(6) M(-1) and 1.0, respectively. The addition of eIFiso4G to the eIFiso4E increased the binding affinity 1.5-fold for VPg as compared with eIFiso4E alone. However, eIFiso4G alone did not bind with VPg. The van't Hoff analyses showed that VPg binding is enthalpy-driven and entropy-favorable with a large negative DeltaH degrees (-29.32 +/- 0.13 kJmol(-1)) and positive DeltaS degrees (36.88 +/- 0.25 Jmol(-1)K(-1)). A Lineweaver-Burk plot indicates mixed-type competitive ligand binding between VPg and anthraniloyl-7-methylguanosine triphosphate for eIFiso4E. Fluorescence stopped-flow studies of eIFiso4E and eIFiso4F with VPg show rapid binding, suggesting kinetic competition between VPg and m(7)G cap. The VPg protein binds much faster than cap analogs. The activation energies for binding of eIFiso4E and eIFiso4F with VPg were 50.70 +/- 1.27 and 75.37 +/- 2.95 kJmol(-1) respectively. Enhancement of eIFiso4F-VPg binding with the addition of a structured RNA derived from tobacco etch virus suggests that translation initiation involving VPg occurs at internal ribosomal entry sites. Furthermore, the formation of a protein-RNA complex containing VPg suggests the possibility of direct participation of VPg in the translation of the viral genome.
对芜菁花叶病毒的VPg与小麦胚真核翻译起始因子eIFiso4E和eIFiso4F(eIFiso4E与eIFiso4G的复合物)之间的相互作用进行了测定和比较。荧光猝灭数据表明,VPg在eIFiso4E上有一个结合位点。Scatchard分析显示,VPg的结合亲和力(K(a))和平均结合位点(n)分别为(8.51±0.21)×10(6) M(-1)和1.0。与单独的eIFiso4E相比,向eIFiso4E中添加eIFiso4G可使VPg的结合亲和力提高1.5倍。然而,单独的eIFiso4G不与VPg结合。范特霍夫分析表明,VPg结合是由焓驱动且熵有利的,具有很大的负ΔH°(-29.32±0.13 kJmol(-1))和正ΔS°(36.88±0.25 Jmol(-1)K(-1))。Lineweaver-Burk图表明,VPg与邻氨基苯甲酰基-7-甲基鸟苷三磷酸在eIFiso4E上存在混合型竞争性配体结合。对eIFiso4E和eIFiso4F与VPg进行的荧光停流研究显示结合迅速,表明VPg与m(7)G帽之间存在动力学竞争。VPg蛋白的结合速度比帽类似物快得多。eIFiso4E和eIFiso4F与VPg结合的活化能分别为50.70±1.27和75.37±2.95 kJmol(-1)。添加源自烟草蚀纹病毒的结构化RNA可增强eIFiso4F-VPg结合,这表明涉及VPg的翻译起始发生在内核糖体进入位点。此外,包含VPg的蛋白质-RNA复合物的形成表明VPg直接参与病毒基因组翻译的可能性。