State Key Laboratory Breeding Base for Zhejiang Sustainable Pest and Disease Control, Zhejiang Academy of Agricultural Sciences, Hangzhou, China.
PLoS One. 2012;7(8):e43242. doi: 10.1371/journal.pone.0043242. Epub 2012 Aug 16.
The p25 triple gene block protein of Potato virus X (PVX) is multifunctional, participating in viral movement and acting as a suppressor of RNA silencing. The cell-to-cell movement of PVX is known to depend on the suppression function of p25. GFP-fused p25 accumulates in rod-like (RL) structures with intense fluorescence in cells. By monitoring the location of fluorescence at different times, we have now shown that the RL structure is composed of filaments. P25 mutants without the conditional ability to recover movement function could not form RL structures while the mutants that had the ability did form the structure, suggesting that the ability of p25 to form RL structures is necessary for its function in cell-to-cell movement, but not for its suppressor function. Moreover, chemical inhibition of microfilaments in cells destroyed the formation of the complete RL structure. Additionally, TGBp2 and TGBp3 were recruited into the RL structure, suggesting a relationship between the TGBps in virus movement.
马铃薯 X 病毒(PVX)的 p25 三基因块蛋白具有多功能性,参与病毒运动,并作为 RNA 沉默的抑制剂。已知 PVX 的细胞间运动依赖于 p25 的抑制功能。GFP 融合的 p25 在细胞中积累成具有强烈荧光的杆状(RL)结构。通过在不同时间监测荧光的位置,我们现在表明 RL 结构由细丝组成。没有恢复运动功能的条件能力的 p25 突变体不能形成 RL 结构,而具有这种能力的突变体能够形成该结构,这表明 p25 形成 RL 结构的能力对于其在细胞间运动中的功能是必要的,但对于其抑制功能不是必需的。此外,细胞中微丝的化学抑制破坏了完整 RL 结构的形成。此外,TGBp2 和 TGBp3 被招募到 RL 结构中,这表明 TGBps 在病毒运动中存在关系。