Galloway Summer E, Wertz Gail W
Department of Microbiology, University of Alabama at Birmingham, Birmingham, AL, USA.
Virology. 2009 Jun 5;388(2):286-93. doi: 10.1016/j.virol.2009.03.015. Epub 2009 Apr 22.
To investigate the polymerase components selectively involved in transcription versus replication of vesicular stomatitis virus (VSV), we sequenced the polymerase gene of a conditionally RNA defective, temperature sensitive VSV: ts(G)114, which has a phenotype upon shift from permissive to non-permissive temperature of shut-down of mRNA transcription and unaffected genome replication. Sequence analysis of the ts(G)114 L gene identified three altered amino acid residues in the L protein. These three changes were specifically engineered individually and in combinations into a functional cDNA clone encoding the VSV genome and tested for association with the temperature sensitive and RNA defective phenotypes in the background of recovered engineered viruses. The data presented in this study show a specific amino acid substitution in domain II of the VSV L protein that significantly affects total RNA synthesis, but when in combination with two additional amino acid substitutions identified in the ts(G)114 L protein, leads to a specific reduction in mRNA transcription, but not replication.
为了研究水泡性口炎病毒(VSV)转录与复制过程中选择性参与的聚合酶成分,我们对一种条件性RNA缺陷、温度敏感的VSV:ts(G)114的聚合酶基因进行了测序,该病毒在从允许温度转变为非允许温度时,会出现mRNA转录停止但基因组复制不受影响的表型。对ts(G)114 L基因的序列分析确定了L蛋白中有三个氨基酸残基发生了改变。这三个变化被分别单独地以及组合地特意引入到一个编码VSV基因组的功能性cDNA克隆中,并在回收的工程病毒背景下测试其与温度敏感和RNA缺陷表型的关联。本研究呈现的数据表明,VSV L蛋白结构域II中的一个特定氨基酸取代会显著影响总RNA合成,但当与在ts(G)114 L蛋白中鉴定出的另外两个氨基酸取代相结合时,会导致mRNA转录特异性降低,而不会影响复制。