Wang Yongzeng, Tzfira Tzvi, Gaba Victor, Citovsky Vitaly, Palukaitis Peter, Gal-On Amit
Department of Virology, Agricultural Research Organization, The Volcani Center, Bet Dagan 50250, Israel.
Department of Biochemistry and Cell Biology, State University of New York at Stony Brook, Stony Brook, NY 11794-5215, USA.
J Gen Virol. 2004 Oct;85(Pt 10):3135-3147. doi: 10.1099/vir.0.80250-0.
The 2b protein encoded by Cucumber mosaic virus (CMV) has been shown to be a silencing suppressor and pathogenicity determinant in solanaceous hosts, but a movement determinant in cucumber. In addition, synergistic interactions between CMV and Zucchini yellow mosaic virus (ZYMV) have been described in several cucurbit species. Here, it was shown that deletion of the 2b gene from CMV prevented extensive systemic movement of the virus in zucchini squash, which could not be complemented by co-infection with ZYMV. Thus, ZYMV expressing a silencing suppressor with a different target could not complement the CMV 2b-specific movement function. Expression of the 2b protein from an attenuated ZYMV vector resulted in a synergistic response, largely restoring infection symptoms of wild-type ZYMV in several cucurbit species. Deletion or alteration of either of two nuclear localization signals (NLSs) did not affect nuclear localization in two assays, but did affect pathogenicity in several cucurbit species, whilst deletion of both NLSs led to loss of nuclear localization. The 2b protein interacted with an Arabidopsis thaliana karyopherin alpha protein (AtKAPalpha) in the yeast two-hybrid system, as did each of the two single NLS-deletion mutants. However, 2b protein containing a deletion of both NLSs was unable to interact with AtKAPalpha. These data suggest that the 2b protein localizes to the nucleus by using the karyopherin alpha-mediated system, but demonstrate that nuclear localization was insufficient for enhancement of the 2b-mediated pathogenic response in cucurbit hosts. Thus, the sequences corresponding to the two NLSs must have another role leading to pathogenicity enhancement.
黄瓜花叶病毒(CMV)编码的2b蛋白在茄科宿主中已被证明是一种沉默抑制子和致病性决定因素,但在黄瓜中却是一种移动决定因素。此外,在几种葫芦科植物中已描述了CMV与西葫芦黄花叶病毒(ZYMV)之间的协同相互作用。在此研究中,结果表明从CMV中缺失2b基因会阻止病毒在西葫芦中广泛的系统移动,这种情况不能通过与ZYMV共同感染来互补。因此,表达具有不同靶标的沉默抑制子的ZYMV不能互补CMV 2b特异性的移动功能。从减毒的ZYMV载体表达2b蛋白会导致协同反应,在几种葫芦科植物中很大程度上恢复了野生型ZYMV的感染症状。两个核定位信号(NLS)中任何一个的缺失或改变在两种检测中均不影响核定位,但确实影响了几种葫芦科植物的致病性,而两个NLS均缺失则导致核定位丧失。在酵母双杂交系统中,2b蛋白与拟南芥核转运蛋白α蛋白(AtKAPalpha)相互作用,两个单NLS缺失突变体中的每一个也是如此。然而,两个NLS均缺失的2b蛋白无法与AtKAPalpha相互作用。这些数据表明,2b蛋白通过利用核转运蛋白α介导的系统定位于细胞核,但表明核定位不足以增强葫芦科宿主中2b介导的致病反应。因此,对应于两个NLS的序列必定具有导致致病性增强的其他作用。