College of Plant Protection, Henan Agricultural University, Zhengzhou, China.
Institute of Cereal and Crops, Hebei Academy of Agriculture and Forestry Sciences, Shijiazhuang, China.
Mol Plant Pathol. 2023 Mar;24(3):208-220. doi: 10.1111/mpp.13287. Epub 2022 Dec 17.
The movement protein (MP) and coat protein (CP) of tobamoviruses play critical roles in viral cell-to-cell and long-distance movement, respectively. Cucumber green mottle mosaic virus (CGMMV) is a member of the genus Tobamovirus. The functions of CGMMV MP and CP during viral infection remain largely unclear. Here, we show that CGMMV MP can interact with CP in vivo, and the amino acids at positions 79-128 in MP are vital for the MP-CP interaction. To confirm this finding, we mutated five conserved residues within the residue 79-128 region and six other conserved residues flanking this region, followed by in vivo interaction assays. The results showed that the conserved threonine residue at the position 107 in MP (MP ) is important for the MP-CP interaction. Substitution of T107 with alanine (MP ) delayed CGMMV systemic infection in Nicotiana benthamiana plants, but increased CGMMV local accumulation. Substitutions of another 10 conserved residues, not responsible for the MP-CP interaction, with alanine inhibited or abolished CGMMV systemic infection, suggesting that these 10 conserved residues are possibly required for the MP movement function through a CP-independent manner. Moreover, two movement function-associated point mutants (MP and MP ) failed to cause systemic infection in plants without impacting on the MP-CP interaction. Furthermore, we have found that co-expression of CGMMV MP and CP increased CP accumulation independent of the interaction. MP and CP interaction inhibits the salicylic acid-associated defence response at an early infection stage. Taken together, we propose that the suppression of host antiviral defence through the MP-CP interaction facilitates virus systemic infection.
运动蛋白 (MP) 和外壳蛋白 (CP) 在病毒细胞间和长距离运动中分别发挥关键作用。黄瓜绿斑驳花叶病毒 (CGMMV) 是烟草花叶病毒属的一员。CGMMV MP 和 CP 在病毒感染过程中的功能在很大程度上仍不清楚。在这里,我们表明 CGMMV MP 可以在体内与 CP 相互作用,并且 MP 中的氨基酸位置 79-128 对 MP-CP 相互作用至关重要。为了证实这一发现,我们突变了 MP 中 79-128 区域内的 5 个保守残基和该区域侧翼的另外 6 个保守残基,然后进行体内相互作用分析。结果表明,MP 中位置 107 的保守苏氨酸残基(MP )对于 MP-CP 相互作用很重要。用丙氨酸(MP )替代 T107 会延迟 CGMMV 在拟南芥植物中的系统感染,但会增加 CGMMV 的局部积累。用丙氨酸替代另外 10 个不负责 MP-CP 相互作用的保守残基会抑制或消除 CGMMV 的系统感染,这表明这 10 个保守残基可能通过 CP 独立的方式对 MP 运动功能是必需的。此外,两个运动功能相关的点突变体(MP 和 MP )在不影响 MP-CP 相互作用的情况下,在植物中无法引起系统感染。此外,我们发现 CGMMV MP 和 CP 的共表达会增加 CP 积累,而不依赖于相互作用。MP-CP 相互作用抑制了早期感染阶段与水杨酸相关的防御反应。综上所述,我们提出通过 MP-CP 相互作用抑制宿主抗病毒防御有助于病毒的系统感染。