Takeda Atsushi, Nakamura Wakako, Sasaki Nobumitsu, Goto Kaku, Kaido Masanori, Okuno Tetsuro, Mise Kazuyuki
Laboratory of Plant Pathology, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
J Gen Virol. 2005 Apr;86(Pt 4):1201-1211. doi: 10.1099/vir.0.80775-0.
Brome mosaic virus (BMV) requires encapsidation-competent coat protein (CP) for cell-to-cell movement and the 3a movement protein (MP) is involved in determining the CP requirement for BMV movement. However, these conclusions have been drawn by using BMV strain M1 (BMV-M1) and a related strain. Here, the ability of the MPs of five other natural BMV strains to mediate the movement of BMV-M1 in the absence of CP was tested. The MP of BMV M2 strain (BMV-M2) efficiently mediated the movement of CP-deficient BMV-M1 and the MPs of two other strains functioned similarly to some extent. Furthermore, BMV-M2 itself moved between cells independently of CP, demonstrating that BMV-M1 and -M2 use different movement modes. Reassortment between CP-deficient BMV-M1 and -M2 showed the involvement of RNA3 in determining the CP requirement for cell-to-cell movement and the involvement of RNAs 1 and 2 in movement efficiency and symptom induction in the absence of CP. Spontaneous BMV MP mutants generated in planta that exhibited CP-independent movement were also isolated and analysed. Comparison of the nucleotide differences of the MP genes of BMV-M1, the natural strains and mutants capable of CP-independent movement, together with further mutational analysis of BMV-M1 MP, revealed that single amino acid differences at the C terminus of MP are sufficient to alter the requirement for CP in the movement of BMV-M1. Based on these findings, a possible virus strategy in which a movement mode is selected in plant viruses to optimize viral infectivity in plants is discussed.
雀麦花叶病毒(BMV)细胞间移动需要具有衣壳化能力的外壳蛋白(CP),而3a移动蛋白(MP)参与决定BMV移动对CP的需求。然而,这些结论是通过使用BMV M1株系(BMV-M1)及一个相关株系得出的。在此,测试了其他五个天然BMV株系的MP在缺乏CP时介导BMV-M1移动的能力。BMV M2株系(BMV-M2)的MP能有效介导缺乏CP的BMV-M1的移动,另外两个株系的MP在一定程度上也有类似功能。此外,BMV-M2自身能在细胞间独立移动而不依赖CP,这表明BMV-M1和-M2采用不同的移动模式。缺乏CP的BMV-M1和-M2之间的重配显示RNA3参与决定细胞间移动对CP的需求,而RNA1和RNA2在缺乏CP时参与移动效率和症状诱导。还分离并分析了在植物中产生的表现出不依赖CP移动的自发BMV MP突变体。比较BMV-M1、能不依赖CP移动的天然株系和突变体的MP基因的核苷酸差异,以及对BMV-M1 MP的进一步突变分析,揭示MP C末端的单个氨基酸差异足以改变BMV-M1移动对CP的需求。基于这些发现,讨论了植物病毒中选择移动模式以优化病毒在植物中感染性的一种可能的病毒策略。