首页> 美国卫生研究院文献>Journal of Virology >Conserved Protein Kinases Encoded by Herpesviruses and Cellular Protein Kinase cdc2 Target the Same Phosphorylation Site in Eukaryotic Elongation Factor 1δ
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Conserved Protein Kinases Encoded by Herpesviruses and Cellular Protein Kinase cdc2 Target the Same Phosphorylation Site in Eukaryotic Elongation Factor 1δ

机译:疱疹病毒和细胞蛋白激酶cdc2编码的保守蛋白激酶靶向真核生物延伸因子1δ中相同的磷酸化位点

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摘要

Earlier studies have shown that translation elongation factor 1δ (EF-1δ) is hyperphosphorylated in various mammalian cells infected with representative alpha-, beta-, and gammaherpesviruses and that the modification is mediated by conserved viral protein kinases encoded by herpesviruses, including UL13 of herpes simplex virus type 1 (HSV-1), UL97 of human cytomegalovirus, and BGLF4 of Epstein-Barr virus (EBV). In the present study, we attempted to identify the site in EF-1δ associated with the hyperphosphorylation by the herpesvirus protein kinases. Our results are as follows: (i) not only in infected cells but also in uninfected cells, replacement of the serine residue at position 133 (Ser-133) of EF-1δ by alanine precluded the posttranslational processing of EF-1δ, which corresponds to the hyperphosphorylation. (ii) A purified chimeric protein consisting of maltose binding protein (MBP) fused to a domain of EF-1δ containing Ser-133 (MBP-EFWt) is specifically phosphorylated in in vitro kinase assays by purified recombinant UL13 fused to glutathione S-transferase (GST) expressed in the baculovirus system. In contrast, the level of phosphorylation by the recombinant UL13 of MBP-EFWt carrying an alanine replacement of Ser-133 (MBP-EFS133A) was greatly impaired. (iii) MBP-EFWt is also specifically phosphorylated in vitro by purified recombinant BGLF4 fused to GST expressed in the baculovirus system, and the level of phosphorylation of MBP-EFS133A by the recombinant BGLF4 was greatly reduced. (iv) The sequence flanking Ser-133 of EF-1δ completely matches the consensus phosphorylation site for a cellular protein kinase, cdc2, and in vitro kinase assays revealed that purified cdc2 phosphorylates Ser-133 of EF-1δ. (v) As observed with EF-1δ, the casein kinase II β subunit (CKIIβ) was specifically phosphorylated by UL13 in vitro, while the level of phosphorylation of CKIIβ by UL13 was greatly diminished when a serine residue at position 209, which has been reported to be phosphorylated by cdc2, was replaced with alanine. These results indicate that the conserved protein kinases encoded by herpesviruses and a cellular protein kinase, cdc2, have the ability to target the same amino acid residues for phosphorylation. Our results raise the possibility that the viral protein kinases mimic cdc2 in infected cells.
机译:较早的研究表明,翻译延长因子1δ(EF-1δ)在感染了代表性的α,β和γ疱疹病毒的各种哺乳动物细胞中都被过度磷酸化,并且这种修饰是由疱疹病毒编码的保守的病毒蛋白激酶介导的,该蛋白激酶包括疱疹的UL13。 1型单纯病毒(HSV-1),人巨细胞病毒UL97和爱泼斯坦巴尔病毒(EBV)的BGLF4。在本研究中,我们试图确定与疱疹病毒蛋白激酶的过度磷酸化有关的EF-1δ位点。我们的结果如下:(i)不仅在感染的细胞中而且在未感染的细胞中,丙氨酸替换EF-1δ133位(Ser-133)的丝氨酸残基均排除了EF-1δ的翻译后处理过度磷酸化。 (ii)在体外激酶测定中,通过融合至谷胱甘肽S-转移酶的纯化重组UL13,将由融合至含有EF-1δ的Ser-133(MBP-EFWt)结构域的麦芽糖结合蛋白(MBP)组成的纯化嵌合蛋白特异性磷酸化(GST)在杆状病毒系统中表达。相反,带有丙氨酸取代的Ser-133(MBP-EFS133A)的MBP-EFWt的重组UL13的磷酸化水平大大受损。 (iii)MBP-EFWt在体外也被与杆状病毒系统中表达的GST融合的纯化的重组BGLF4特异性地磷酸化,并且重组BGLF4使MBP-EFS133A的磷酸化水平大大降低。 (iv)EF-1δ的Ser-133侧翼序列与细胞蛋白激酶cdc2的共有磷酸化位点完全匹配,体外激酶测定显示纯化的cdc2使EF-1δ的Ser-133磷酸化。 (v)如在EF-1δ中观察到的,酪蛋白激酶IIβ亚基(CKIIβ)在体外被UL13特异性磷酸化,而当在209位的丝氨酸残基已经被UL13磷酸化时,CK13β的CKIIβ磷酸化水平大大降低。据报道被cdc2磷酸化,被丙氨酸取代。这些结果表明,由疱疹病毒编码的保守蛋白激酶和细胞蛋白激酶cdc2具有靶向相同氨基酸残基进行磷酸化的能力。我们的结果提高了病毒蛋白激酶在感染细胞中模拟cdc2的可能性。

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