首页> 美国卫生研究院文献>Plant Physiology >Importin-α-Mediated Nucleolar Localization of Potato Mop-Top Virus TRIPLE GENE BLOCK1 (TGB1) Protein Facilitates Virus Systemic Movement Whereas TGB1 Self-Interaction Is Required for Cell-to-Cell Movement in Nicotiana benthamiana
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Importin-α-Mediated Nucleolar Localization of Potato Mop-Top Virus TRIPLE GENE BLOCK1 (TGB1) Protein Facilitates Virus Systemic Movement Whereas TGB1 Self-Interaction Is Required for Cell-to-Cell Movement in Nicotiana benthamiana

机译:Importin-α介导的马铃薯拖把顶部病毒三重基因组1(TGB1)蛋白的核仁定位促进了病毒的全身运动而本生烟草的细胞间运动需要TGB1自相互作用。

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摘要

Recently, it has become evident that nucleolar passage of movement proteins occurs commonly in a number of plant RNA viruses that replicate in the cytoplasm. Systemic movement of Potato mop-top virus () involves two viral transport forms represented by a complex of viral RNA and TRIPLE GENE BLOCK1 (TGB1) movement protein and by polar virions that contain the minor coat protein and TGB1 attached to one extremity. The integrity of polar virions ensures the efficient movement of RNA-CP, which encodes the virus coat protein. Here, we report the involvement of nuclear transport receptors belonging to the importin-α family in nucleolar accumulation of the TGB1 protein and, subsequently, in the systemic movement of the virus. Virus-induced gene silencing of two importin-α paralogs in Nicotiana benthamiana resulted in significant reduction of TGB1 accumulation in the nucleus, decreasing the accumulation of the virus progeny in upper leaves and the loss of systemic movement of RNA-CP. TGB1 interacted with importin-α in N. benthamiana, which was detected by bimolecular fluorescence complementation in the nucleoplasm and nucleolus. The interaction was mediated by two nucleolar localization signals identified by bioinformatics and mutagenesis in the TGB1 amino-terminal domain. Our results showed that while TGB1 self-interaction is needed for cell-to-cell movement, importin-α-mediated nucleolar targeting of TGB1 is an essential step in establishing the efficient systemic infection of the entire plant. These results enabled the identification of two separate domains in TGB1: an internal domain required for TGB1 self-interaction and cell-to-cell movement and the amino-terminal domain required for importin-α interaction in plants, nucleolar targeting, and long-distance movement.
机译:最近,已经变得明显的是,运动蛋白的核仁通道通常发生在许多在细胞质中复制的植物RNA病毒中。马铃薯拖把病毒的系统运动涉及两种病毒运输形式,以病毒RNA和三倍基因块1(TGB1)运动蛋白的复合体以及包含次要外壳蛋白和TGB1附着在一个肢体上的极性病毒粒子为代表。极性病毒粒子的完整性可确保RNA-CP的高效运动,该蛋白可编码病毒外壳蛋白。在这里,我们报道了属于importin-α家族的核转运受体参与了TGB1蛋白的核仁积累,并随后参与了病毒的全身运动。病毒对本氏烟草中两个importin-α旁系同源物的病毒诱导的基因沉默导致TGB1在细胞核中的积累显着减少,减少了后叶在上部叶片中的病毒后代的积累和RNA-CP的系统性运动的丧失。 TGB1与本氏烟草中的importin-α相互作用,这是通过核质和核仁中的双分子荧光互补检测到的。相互作用是由生物信息学和诱变在TGB1氨基末端域中确定的两个核仁定位信号介导的。我们的结果表明,虽然TGB1自相互作用是细胞间移动所必需的,但导入素-α介导的TGB1核仁靶向是建立整个植物有效系统感染的重要步骤。这些结果使得能够鉴定TGB1中的两个独立域:TGB1自我相互作用和细胞间移动所需的内部域以及植物中importin-α相互作用,核仁靶向和长距离所需的氨基末端域。运动。

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