Chang H W, Jacobs B L
Department of Microbiology, Arizona State University, Tempe 85287-2701.
Virology. 1993 Jun;194(2):537-47. doi: 10.1006/viro.1993.1292.
The E3L gene of vaccinia virus encodes the double-stranded (ds) RNA binding proteins p20 and p25 that exhibit inhibitory activity for the IFN-induced, P1/elF-2 alpha protein kinase. A region in the E3L encoded proteins (residues 156-180) shares a high degree of similarity with several proteins that bind double-helical RNA including the P1/elF-1 alpha kinase, bacterial and yeast RNase III, and a human transactivator response element/Rev response element binding protein. In this study, mutants of E3L proteins were constructed in order to determine the region of the proteins required for dsRNA binding and kinase inhibitory activity. Our data indicate that both the region necessary for dsRNA binding and for kinase inhibitory activity are located at the carboxyl terminus of the protein. The E3L proteins with 7 amino acids deleted from the carboxyl terminus (184-190) could bind to dsRNA, but with lower affinity than could the full-length protein. This protein did not detectably inhibit kinase in vitro. Deletion of 26 amino acids from the carboxyl terminus of the E3L proteins (165-190) abolished dsRNA binding activity and kinase inhibitory activity. In addition, mutations at amino acid 164, 167, or 174 severely inhibited binding to dsRNA. On the other hand, deletion of 83 amino acids from the amino terminus did not affect the proteins' ability to bind dsRNA or inhibit kinase. These results suggest that a region of sequence between amino acids 164 and 183 is necessary for E3L proteins' dsRNA binding activity. This region lies within the homologous domain that the E3L proteins share with other dsRNA binding proteins.
痘苗病毒的E3L基因编码双链(ds)RNA结合蛋白p20和p25,它们对干扰素诱导的P1/elF-2α蛋白激酶具有抑制活性。E3L编码蛋白中的一个区域(第156 - 180位氨基酸残基)与几种结合双螺旋RNA的蛋白高度相似,这些蛋白包括P1/elF-1α激酶、细菌和酵母的核糖核酸酶III以及一种人类反式激活应答元件/Rev应答元件结合蛋白。在本研究中,构建了E3L蛋白的突变体,以确定该蛋白与dsRNA结合及激酶抑制活性所需的区域。我们的数据表明,dsRNA结合和激酶抑制活性所需的区域都位于该蛋白的羧基末端。从羧基末端缺失7个氨基酸(184 - 190)的E3L蛋白能够结合dsRNA,但亲和力低于全长蛋白。该蛋白在体外未检测到对激酶的抑制作用。从E3L蛋白的羧基末端缺失26个氨基酸(165 - 190)则消除了dsRNA结合活性和激酶抑制活性。此外,第164、167或174位氨基酸的突变严重抑制了与dsRNA的结合。另一方面,从氨基末端缺失83个氨基酸并不影响该蛋白结合dsRNA或抑制激酶的能力。这些结果表明,E3L蛋白的dsRNA结合活性需要第164至183位氨基酸之间的一段序列区域。该区域位于E3L蛋白与其他dsRNA结合蛋白共有的同源结构域内。