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随机诱变确定了泰勒氏病毒前导蛋白的一个结构域,该结构域对于拮抗核质运输和细胞因子基因表达至关重要。

Random mutagenesis defines a domain of Theiler's virus leader protein that is essential for antagonism of nucleocytoplasmic trafficking and cytokine gene expression.

作者信息

Ricour Céline, Borghese Fabian, Sorgeloos Frédéric, Hato Stanleyson V, van Kuppeveld Frank J M, Michiels Thomas

机构信息

Université catholique de Louvain, de Duve Institute, Brussels, Belgium.

出版信息

J Virol. 2009 Nov;83(21):11223-32. doi: 10.1128/JVI.00829-09. Epub 2009 Aug 26.

Abstract

The leader protein of cardioviruses, Theiler's murine encephalomyelitis virus (TMEV) and encephalomyocarditis virus (EMCV), is a multifunctional protein known to antagonize type I interferon expression and to interfere with nucleocytoplasmic trafficking of host proteins and mRNA. This protein plays an important role in the capacity of TMEV to establish persistent infection of the central nervous system. Mutant forms of the TMEV leader protein were generated by random mutagenesis and selected after retroviral transduction on the basis of the loss of the highly toxic nature of this protein. Selected mutations define a short C-terminal domain of the leader conserved in TMEV and Saffold virus but lacking in the EMCV leader and thus called the Theilo domain. Mutations in this domain had a dramatic impact on TMEV L protein activity. Like the zinc finger mutation, Theilo domain mutations affected all of the activities of the L protein tested: interferon gene transcription and IRF-3 dimerization antagonism, alteration of nucleocytoplasmic trafficking, nucleoporin 98 hyperphosphorylation, and viral persistence in vivo. This suggests that the Zn finger and the Theilo domain of the protein cooperate for function. Moreover, the fact that all of the activities tested were affected by these mutations suggests that the various leader protein functions are somehow coupled.

摘要

心病毒属病毒、泰勒氏鼠脑脊髓炎病毒(TMEV)和脑心肌炎病毒(EMCV)的前导蛋白是一种多功能蛋白,已知其可拮抗I型干扰素的表达,并干扰宿主蛋白和mRNA的核质转运。该蛋白在TMEV建立中枢神经系统持续性感染的能力中发挥重要作用。通过随机诱变产生TMEV前导蛋白的突变形式,并在逆转录病毒转导后基于该蛋白高毒性的丧失进行筛选。所选突变定义了TMEV和萨福尔德病毒中保守的前导蛋白的一个短C末端结构域,但EMCV前导蛋白中不存在该结构域,因此称为泰洛结构域。该结构域中的突变对TMEV L蛋白活性有显著影响。与锌指突变一样,泰洛结构域突变影响所测试的L蛋白的所有活性:干扰素基因转录和IRF-3二聚化拮抗、核质转运改变、核孔蛋白98过度磷酸化以及体内病毒持续性。这表明该蛋白的锌指和泰洛结构域协同发挥功能。此外,所有测试活性均受这些突变影响这一事实表明,前导蛋白的各种功能在某种程度上是相互关联的。

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