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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Cauliflower mosaic virus gene VI product N-terminus contains regions involved in resistance-breakage, self-association and interactions with movement protein.
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Cauliflower mosaic virus gene VI product N-terminus contains regions involved in resistance-breakage, self-association and interactions with movement protein.

机译:花椰菜花叶病毒基因VI产物N末端包含与抗性断裂,自我结合以及与运动蛋白相互作用有关的区域。

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摘要

Cauliflower mosaic virus (CaMV) gene VI encodes a multifunctional protein (P6) involved in the translation of viral RNA, the formation of inclusion bodies, and the determination of host range. Arabidopsis thaliana ecotype Tsu-0 prevents the systemic spread of most CaMV isolates, including CM1841. However, CaMV isolate W260 overcomes this resistance. In this paper, the N-terminal 110 amino acids of P6 (termed D1) were identified as the resistance-breaking region. D1 also bound full-length P6. Furthermore, binding of W260 D1 to P6 induced higher beta-galactosidase activity and better leucine-independent growth in the yeast two-hybrid system than its CM1841 counterpart. Thus, W260 may evade Tsu-0 resistance by mediating P6 self-association in a manner different from that of CM1841. Because Tsu-0 resistance prevents virus movement, interaction of P6 with P1 (CaMV movement protein) was investigated. Both yeast two-hybrid analyses and maltose-binding protein pull-down experiments show that P6 interacts with P1. Although neither half of P1 interacts with P6, the N-terminus of P6 binds P1. Interestingly, D1 by itself does not interact with P1, indicating that different portions of the P6 N-terminus are involved in different activities. The P1-P6 interactions suggest a role for P6 in virus transport, possibly by regulating P1 tubule formation or the assembly of movement complexes.
机译:花椰菜花叶病毒(CaMV)基因VI编码一种多功能蛋白(P6),参与病毒RNA的翻译,包涵体的形成以及宿主范围的确定。拟南芥生态型Tsu-0可阻止大多数CaMV分离株(包括CM1841)的系统传播。但是,CaMV隔离株W260克服了这一阻力。在本文中,P6的N端110个氨基酸(称为D1)被确定为抗性断裂区域。 D1也绑定了全长P6。此外,在酵母双杂交系统中,W260 D1与P6的结合比其CM1841诱导更高的β-半乳糖苷酶活性和更好的亮氨酸非依赖性生长。因此,W260可以通过以不同于CM1841的方式调解P6自关联来规避Tsu-0抵抗。由于Ts-0抗性阻止病毒移动,因此研究了P6与P1(CaMV移动蛋白)的相互作用。酵母双杂交分析和麦芽糖结合蛋白下拉实验均显示P6与P1相互作用。尽管P1的一半都没有与P6相互作用,但P6的N端与P1结合。有趣的是,D1本身并不与P1相互作用,表明P6 N端的不同部分参与了不同的活动。 P1-P6相互作用暗示了P6在病毒运输中的作用,可能是通过调节P1小管的形成或运动复合体的组装来实现的。

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