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An Umbraviral Protein Involved in Long-Distance RNA Movement Binds Viral RNA and Forms Unique Protective Ribonucleoprotein Complexes

机译:涉及远距离RNA运动的脐带蛋白结合病毒RNA并形成独特的保护性核糖核蛋白复合物。

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摘要

Umbraviruses are different from most other viruses in that they do not encode a conventional capsid protein (CP); therefore, no recognizable virus particles are formed in infected plants. Their lack of a CP is compensated for by the ORF3 protein, which fulfils functions that are provided by the CPs of other viruses, such as protection and long-distance movement of viral RNA. When the Groundnut rosette virus (GRV) ORF3 protein was expressed from Tobacco mosaic virus (TMV) in place of the TMV CP [ΤMV(ORF3)], in infected cells it interacted with the TMV RNA to form filamentous ribonucleoprotein (RNP) particles that had elements of helical structure but were not as uniform as classical virions. These RNP particles were observed in amorphous inclusions in the cytoplasm, where they were embedded within an electron-dense matrix material. The inclusions were detected in all types of cells and were abundant in phloem-associated cells, in particular companion cells and immature sieve elements. RNP-containing complexes similar in appearance to the inclusions were isolated from plants infected with ΤMV(ORF3) or with GRV itself. In vitro, the ORF3 protein formed oligomers and bound RNA in a manner consistent with its role in the formation of RNP complexes. It is suggested that the cytoplasmic RNP complexes formed by the ORF3 protein serve to protect viral RNA and may be the form in which it moves through the phloem. Thus, the RNP particles detected here represent a novel structure which may be used by umbraviruses as an alternative to classical virions.
机译:伞形病毒与大多数其他病毒的不同之处在于,它们不编码常规的衣壳蛋白(CP)。因此,在受感染的植物中不会形成可识别的病毒颗粒。它们缺乏CP可以通过ORF3蛋白来弥补,ORF3蛋白可以实现其他病毒的CP提供的功能,例如病毒RNA的保护和长距离移动。当花生花环病毒(GRV)ORF3蛋白由烟草花叶病毒(TMV)代替TMV CP [ΤMV(ORF3)]表达时,在受感染的细胞中与TMV RNA相互作用形成丝状核糖核蛋白(RNP)颗粒,具有螺旋结构的元素,但不如经典病毒体统一。在细胞质中的无定形夹杂物中观察到了这些RNP颗粒,它们被嵌入电子密集的基质材料中。在所有类型的细胞中都检测到了内含物,并且在韧皮部相关的细胞(尤其是伴生细胞和未成熟的筛分元件)中存在大量内含物。从被ΤMV(ORF3)或GRV本身感染的植物中分离出外观与内含物相似的含RNP的复合物。在体外,ORF3蛋白形成寡聚物并与RNA结合,其方式与其在RNP复合物形成中的作用一致。提示由ORF3蛋白形成的细胞质RNP复合物起保护病毒RNA的作用,并且可能是其通过韧皮部的形式。因此,此处检测到的RNP颗粒代表了一种新型结构,该结构可被伞状病毒用作经典病毒体的替代物。

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