Okade Hayato, Fujita Yuki, Miyamoto Saori, Tomoo Koji, Muto Shinji, Miyoshi Hiroshi, Natsuaki Tomohide, Rhoads Robert E, Ishida Toshimasa
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences, 4-20-1 Nasahara, Takatsuki, Osaka, Japan.
J Biochem. 2009 Mar;145(3):299-307. doi: 10.1093/jb/mvn180. Epub 2009 Jan 3.
To investigate the binding specificity of turnip mosaic virus (TuMV) viral protein-genome linked (VPg) with translation initiation factor 4E, we evaluated here the kinetic parameters for the interactions of human eIF4E, Caenorhabditis elegans IFE-3 and IFE-5 and Arabidopsis eIFiso4E, by surface plasmon resonance (SPR). The results indicated that TuMV VPg does not show a binding preference for Arabidopsis eIFiso4E, even though it is from a host species whereas the other eIF4E orthologues are not. Surprisingly, the effect of m(7)GTP on both the rate constants and equilibrium binding constants for the interactions of VPg differed for the four eIF4E orthologues. In the case of eIFiso4E and IFE-3, m(7)GTP increased k(on), but for eIF4E and IFE-5, it decreased k(on). To provide insight into the structural basis for these differences in VPg binding, tertiary structures of the eIF4E orthologues were predicted on the basis of the previously determined crystal structure of m(7)GpppA-bound human eIF4E. The results suggested that in cap-bound eIF4E orthologues, the VPg binds to the C-terminal region, which constitutes one side of the entrance to the cap-binding pocket, whereas in the cap-free state, VPg binds to the widely opened cap-binding pocket and its surrounding region. The binding of VPg to the C-terminal region was confirmed by the SPR analyses of N- or C-terminal residues-deleted eIF4E orthologues.
为了研究芜菁花叶病毒(TuMV)病毒蛋白基因组连接物(VPg)与翻译起始因子4E的结合特异性,我们在此通过表面等离子体共振(SPR)评估了人eIF4E、秀丽隐杆线虫IFE-3和IFE-5以及拟南芥eIFiso4E相互作用的动力学参数。结果表明,TuMV VPg对拟南芥eIFiso4E没有结合偏好,尽管它来自宿主物种,而其他eIF4E直系同源物则不然。令人惊讶的是,m(7)GTP对VPg相互作用的速率常数和平衡结合常数的影响在四种eIF4E直系同源物中有所不同。就eIFiso4E和IFE-3而言,m(7)GTP增加了k(on),但对于eIF4E和IFE-5,它降低了k(on)。为了深入了解VPg结合中这些差异的结构基础,基于先前确定的与m(7)GpppA结合的人eIF4E的晶体结构预测了eIF4E直系同源物的三级结构。结果表明,在与帽结合的eIF4E直系同源物中,VPg与构成帽结合口袋入口一侧的C末端区域结合,而在无帽状态下,VPg与广泛开放的帽结合口袋及其周围区域结合。通过对N端或C端残基缺失的eIF4E直系同源物的SPR分析证实了VPg与C末端区域的结合。