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首页> 外文期刊>Journal of Molecular Biology >Myxoma Virus Immunomodulatory Protein M156R is a Structural Mimic of Eukaryotic Translation Initiation Factor eIF2alpha.
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Myxoma Virus Immunomodulatory Protein M156R is a Structural Mimic of Eukaryotic Translation Initiation Factor eIF2alpha.

机译:粘液瘤病毒免疫调节蛋白M156R是真核翻译起始因子eIF2alpha的结构模拟物。

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Phosphorylation of the translation initiation factor eIF2 on Ser51 of its alpha subunit is a key event for regulation of protein synthesis in all eukaryotes. M156R, the product of the myxoma virus M156R open reading frame, has sequence similarity to eIF2alpha as well as to a family of viral proteins that bind to the interferon-induced protein kinase PKR and inhibit phosphorylation of eIF2alpha. In this study, we demonstrate that, like eIF2alpha. M156R is an efficient substrate for phosphorylation by PKR and can compete with eIF2alpha. To gain insights into the substrate specificity of the eIF2alpha kinases, we have determined the nuclear magnetic resonance (NMR) structure of M156R, the first structure of a myxoma virus protein. The fold consists of a five-stranded antiparallel beta-barrel with two of the strands connected by a loop and an alpha-helix. The similarity between M156R and the beta-barrel structure in the N terminus of eIF2alpha suggests that the viral homologs mimic eIF2alpha structure in order to compete for binding to PKR. A homology-modeled structure of the well-studied vaccinia virus K3L was generated on the basis of alignment with M156R. Comparison of the structures of the K3L model, M156R, and human eIF2alpha indicated that residues important for binding to PKR are located at conserved positions on the surface of the beta-barrel and in the mobile loop, identifying the putative PKR recognition motif.
机译:在其真核生物中,翻译起始因子eIF2在其alpha亚基的Ser51上的磷酸化是调节蛋白质合成的关键事件。粘液瘤病毒M156R开放阅读框的产物M156R与eIF2alpha以及与干扰素诱导的蛋白激酶PKR结合并抑制eIF2alpha磷酸化的病毒蛋白家族具有序列相似性。在这项研究中,我们证明了这一点,例如eIF2alpha。 M156R是PKR磷酸化的有效底物,可以与eIF2alpha竞争。为了深入了解eIF2alpha激酶的底物特异性,我们确定了粘液瘤病毒蛋白的第一个结构M156R的核磁共振(NMR)结构。折叠由五链反平行β-桶组成,其中两根链通过环和α-螺旋连接。 M156R和eIF2alpha的N末端的β桶结构之间的相似性表明,病毒同源物模仿eIF2alpha的结构以竞争与PKR的结合。在与M156R的比对基础上,产生了经过充分研究的痘苗病毒K3L的同源模型。 K3L模型,M156R和人类eIF2alpha的结构比较表明,对结合PKR重要的残基位于beta桶表面和移动环的保守位置,从而确定了推定的PKR识别基序。

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