Gao Y, Lenard J
Department of Physiology and Biophysics, Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey, Piscataway 08854-5635, USA.
J Virol. 1995 Dec;69(12):7718-23. doi: 10.1128/JVI.69.12.7718-7723.1995.
It was previously shown that the phosphoprotein (P) of vesicular stomatitis virus must undergo phosphorylation-dependent multimerization to become transcriptionally active. Phosphorylation at S-60 and/or T-62 by casein kinase II or substitution of these residues by D is required for multimer formation. We now find that substitution of either one of these residues by A prevents phosphorylation by casein kinase II and multimer formation. The binding of multimeric P to the other two transcriptional components of vesicular stomatitis virus (L protein and the N-RNA template) has been characterized by using P immobilized on beads through its poly(His) tag to facilitate recovery of bound complexes. Multimerization of P was absolutely required for binding to both L and template. Multimeric P combined with the polymerase enzyme (L) in a stoichiometric 1:1 complex, which bound to the N-RNA template much more strongly than multimeric P alone. Substitution of S-227 and S-233 by A residues had no effect on multimerization or binding of L to P but prevented binding of both P and L to template and abolished transcriptional activity. In contrast, substitution of these residues with D residues had no effect on template binding or activity. However, substitution at these sites by either D or A largely abolished phosphorylation by L-associated kinases, thus identifying S-227 and S-233 as the major sites targeted by these kinases and confirming that phosphorylation of P protein by L-associated kinases is without transcriptional effect.
先前的研究表明,水疱性口炎病毒的磷蛋白(P)必须经过磷酸化依赖性多聚化才能具有转录活性。酪蛋白激酶II在S-60和/或T-62位点进行磷酸化或用D取代这些残基是多聚体形成所必需的。我们现在发现,用A取代这些残基中的任何一个都会阻止酪蛋白激酶II的磷酸化和多聚体形成。通过使用通过其多聚组氨酸标签固定在珠子上的P来促进结合复合物的回收,已对多聚体P与水疱性口炎病毒的其他两个转录成分(L蛋白和N-RNA模板)的结合进行了表征。P的多聚化是与L和模板结合所绝对必需的。多聚体P与聚合酶(L)以化学计量比1:1形成复合物,该复合物与N-RNA模板的结合比单独的多聚体P要强得多。用A残基取代S-227和S-233对多聚化或L与P的结合没有影响,但阻止了P和L与模板两者的结合并消除了转录活性。相比之下,用D残基取代这些残基对模板结合或活性没有影响。然而,在这些位点用D或A取代在很大程度上消除了与L相关的激酶的磷酸化,从而确定S-227和S-233是这些激酶的主要作用位点,并证实与L相关的激酶对P蛋白的磷酸化没有转录作用。