De Jong W, Mise K, Chu A, Ahlquist P
Institute for Molecular Virology and Department of Plant Pathology, University of Wisconsin-Madison, 53706, USA.
Virology. 1997 May 26;232(1):167-73. doi: 10.1006/viro.1997.8544.
Previously we have reported that the essential 3a movement gene of icosahedral cowpea chlorotic mottle virus (CCMV) can be functionally replaced by the 30-kDa movement gene of rod-shaped sunn-hemp mosaic virus (SHMV). Because plant RNA viruses differ in requiring or not requiring coat protein for systemic infection, we have now investigated whether systemic spread by this CCMV/SHMV hybrid is dependent on its CCMV coat protein as well as its SHMV movement protein. We find that either deletion or frameshift mutations in the coat protein gene block systemic spread. Thus, like wild-type CCMV, systemic infection by the hybrid is dependent on both movement protein and coat protein. These results further support the conclusion that the required functions of the coat and movement proteins in CCMV spread do not depend on sequence-specific interaction between these proteins. Additional features of the hybrid also motivated testing the effects of modulating movement protein expression. Creating an extra, out-of-frame translational start codon (AUG) shortly upstream of the 3a movement protein gene in CCMV downregulated its expression 18-fold. Nevertheless, for CCMV derivatives bearing either the CCMV 3a gene or the SHMV 30-kDa gene, the extra AUG resulted in only a minor delay in the onset of viral spread and little or no effect on the subsequent rate of cell-to-cell spread. Thus, under normal circumstances, the rate of CCMV cell-to-cell spread in cowpea plants appears to be limited primarily by factors other than movement protein synthesis.
此前我们报道过,二十面体豇豆花叶斑驳病毒(CCMV)的必需3a运动基因可被杆状太阳麻花叶病毒(SHMV)的30 kDa运动基因功能性替代。由于植物RNA病毒在系统感染时对衣壳蛋白的需求不同,我们现在研究了这种CCMV/SHMV杂种病毒的系统传播是否依赖于其CCMV衣壳蛋白以及SHMV运动蛋白。我们发现衣壳蛋白基因的缺失或移码突变都会阻止系统传播。因此,与野生型CCMV一样,杂种病毒的系统感染依赖于运动蛋白和衣壳蛋白。这些结果进一步支持了以下结论:CCMV传播过程中衣壳蛋白和运动蛋白所需的功能并不依赖于这些蛋白之间的序列特异性相互作用。杂种病毒的其他特性也促使我们测试调节运动蛋白表达的效果。在CCMV的3a运动蛋白基因上游紧邻处创建一个额外的、框外的翻译起始密码子(AUG),使其表达下调了18倍。然而,对于携带CCMV 3a基因或SHMV 30 kDa基因的CCMV衍生物,额外的AUG仅导致病毒传播起始略有延迟,对随后的细胞间传播速率几乎没有影响。因此,在正常情况下,CCMV在豇豆植株中的细胞间传播速率似乎主要受运动蛋白合成以外的因素限制。